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    <description>Author(s): Kexin Song, Chun-Sheng Liu, Shaohui Yu, Xiaohong Zheng, Hua Hao, and Weiyang Wang&lt;br/&gt;&lt;span&gt;Two-dimensional (2D) multiferroic materials with polarization-tunable electronic properties provide unprecedented opportunities for designing high-performance ferroelectric tunnel junctions (FTJs). In this work, we focus on , a 2D multiferroic derived from ferroelectric via Cr substitution, which ex…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Wed Sep 02, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Kexin Song, Chun-Sheng Liu, Shaohui Yu, Xiaohong Zheng, Hua Hao, and Weiyang Wang</p><span>Two-dimensional (2D) multiferroic materials with polarization-tunable electronic properties provide unprecedented opportunities for designing high-performance ferroelectric tunnel junctions (FTJs). In this work, we focus on , a 2D multiferroic derived from ferroelectric via Cr substitution, which ex…</span><br/><p>[Phys. Rev. Applied] Published Wed Sep 02, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Momentum-selective coupling-driven transport behavior in two-dimensional Janus multiferroic InCrS${}_{3}$&lt;/span&gt;</dc:title>
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    <dc:date>2026-09-02T10:00:00+00:00</dc:date>
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    <description>Author(s): Amy Damitz, George Burns, and Yuan-Yu Jau&lt;br/&gt;&lt;span&gt;We report several technical approaches that significantly improve the performance of a vapor-cell atomic electrometer operating in the quasi-DC frequency domain ($≪$ 1 kHz). With a very small active volume of approximately 11 mm${}^{3}$ inside a 2$$2$$2cm$^3$ vapor cell, we demonstrated a noise floo…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Wed Sep 02, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Amy Damitz, George Burns, and Yuan-Yu Jau</p><span>We report several technical approaches that significantly improve the performance of a vapor-cell atomic electrometer operating in the quasi-DC frequency domain (<math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mo>≪</mo></math> 1 kHz). With a very small active volume of approximately 11 mm<math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><msup><mi></mi><mn>3</mn></msup></math> inside a 2$<math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mn>2</mn></math><math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mn>2</mn><mi>c</mi><mi>m</mi></mrow></math>^3$ vapor cell, we demonstrated a noise floor for electri…</span><br/><p>[Phys. Rev. Applied] Published Wed Sep 02, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;High-sensitivity vapor-cell quasi-DC atomic E-field sensor&lt;/span&gt;</dc:title>
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    <title>&lt;span&gt;Design and optimization of spin dynamics in germanium quantum dots: $g$-factor modulation, geometry-induced dephasing sweet spots, and phonon-induced relaxation&lt;/span&gt;</title>
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    <description>Author(s): Ngoc Duong and Daryoosh Vashaee&lt;br/&gt;&lt;span&gt;Gate geometry and bias asymmetry can be used to engineer spin dynamics in gate-defined Ge hole quantum dots by reshaping the confinement potential and driving transitions between distinct confinement regimes. Using a realistic three-dimensional device model, we show that these transitions strongly m…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Wed Sep 02, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Ngoc Duong and Daryoosh Vashaee</p><span>Gate geometry and bias asymmetry can be used to engineer spin dynamics in gate-defined Ge hole quantum dots by reshaping the confinement potential and driving transitions between distinct confinement regimes. Using a realistic three-dimensional device model, we show that these transitions strongly m…</span><br/><p>[Phys. Rev. Applied] Published Wed Sep 02, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Design and optimization of spin dynamics in germanium quantum dots: $g$-factor modulation, geometry-induced dephasing sweet spots, and phonon-induced relaxation&lt;/span&gt;</dc:title>
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    <dc:identifier>doi:10.1103/zvhv-klhf</dc:identifier>
    <prism:doi>10.1103/zvhv-klhf</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-09-02T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/42077A1eT3a1760b85586a585c6fbf5f9ffeb0934</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/1507bA97E1011804062155b48116e76d22238c8c5">
    <title>&lt;span&gt;In situ differentiable complex-field calibration for high-fidelity Hamiltonian evaluation in spatial photonic Ising machines&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/1507bA97E1011804062155b48116e76d22238c8c5</link>
    <description>Author(s): Haijun Zhou, Maolin Wang, Qin Luo, Hengyang Li, Yu Xiao, Xiahui Tang, Yingxiong Qin, Lin Wu, and Gang Xu&lt;br/&gt;&lt;span&gt;Spatial photonic Ising machines (SPIMs) exploit free-space Fourier propagation to perform parallel optical computation of spin-spin couplings, providing a promising platform for large-scale combinatorial optimization. However, their fidelity is limited by intrinsic optical aberrations and nonuniform…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Wed Sep 02, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Haijun Zhou, Maolin Wang, Qin Luo, Hengyang Li, Yu Xiao, Xiahui Tang, Yingxiong Qin, Lin Wu, and Gang Xu</p><span>Spatial photonic Ising machines (SPIMs) exploit free-space Fourier propagation to perform parallel optical computation of spin-spin couplings, providing a promising platform for large-scale combinatorial optimization. However, their fidelity is limited by intrinsic optical aberrations and nonuniform…</span><br/><p>[Phys. Rev. Applied] Published Wed Sep 02, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;In situ differentiable complex-field calibration for high-fidelity Hamiltonian evaluation in spatial photonic Ising machines&lt;/span&gt;</dc:title>
    <dc:creator>Haijun Zhou, Maolin Wang, Qin Luo, Hengyang Li, Yu Xiao, Xiahui Tang, Yingxiong Qin, Lin Wu, and Gang Xu</dc:creator>
    <dc:date>2026-09-02T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/dgf5-pcc1</dc:identifier>
    <prism:doi>10.1103/dgf5-pcc1</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-09-02T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/1507bA97E1011804062155b48116e76d22238c8c5</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/14077Af0W161b602b4bc3e28e8d1ece3082133f07">
    <title>&lt;span&gt;Tunable SQUID coupler for fluxonium qubits&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/14077Af0W161b602b4bc3e28e8d1ece3082133f07</link>
    <description>Author(s): Abhishek Chakraborty, Bibek Bhandari, D. Dominic Briseñ o-Colunga, Noah Stevenson, Zahra Pedramrazi, Chuan-Hong Liu, David I. Santiago, Irfan Siddiqi, Justin Dressel, and Andrew N. Jordan&lt;br/&gt;&lt;span&gt;Tunable couplers enable high-fidelity two-qubit gates leveraging high on/off coupling ratios and reduced crosstalk within a single design. We investigate a galvanically connected direct-current superconducting quantum interference device (dc SQUID) as a minimal tunable coupling element for fluxonium…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Tue Sep 01, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Abhishek Chakraborty, Bibek Bhandari, D. Dominic Briseñ o-Colunga, Noah Stevenson, Zahra Pedramrazi, Chuan-Hong Liu, David I. Santiago, Irfan Siddiqi, Justin Dressel, and Andrew N. Jordan</p><span>Tunable couplers enable high-fidelity two-qubit gates leveraging high on/off coupling ratios and reduced crosstalk within a single design. We investigate a galvanically connected direct-current superconducting quantum interference device (dc SQUID) as a minimal tunable coupling element for fluxonium…</span><br/><p>[Phys. Rev. Applied] Published Tue Sep 01, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Tunable SQUID coupler for fluxonium qubits&lt;/span&gt;</dc:title>
    <dc:creator>Abhishek Chakraborty, Bibek Bhandari, D. Dominic Briseñ o-Colunga, Noah Stevenson, Zahra Pedramrazi, Chuan-Hong Liu, David I. Santiago, Irfan Siddiqi, Justin Dressel, and Andrew N. Jordan</dc:creator>
    <dc:date>2026-09-01T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/yt32-gmvt</dc:identifier>
    <prism:doi>10.1103/yt32-gmvt</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-09-01T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/14077Af0W161b602b4bc3e28e8d1ece3082133f07</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/7d075A4dEadEa31460d981f5bb327c35984ed49c8">
    <title>&lt;span&gt;High-bandwidth coherence cloning using optical-phase-locking feedforward&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/7d075A4dEadEa31460d981f5bb327c35984ed49c8</link>
    <description>Author(s): Chen Jia, Zhen-Xing Hua, Yu-Xin Chao, and Meng Khoon Tey&lt;br/&gt;&lt;span&gt;Ultra-narrow-linewidth lasers with suppressed high-frequency phase noise are critical for quantum control and precision metrology. While optical phase locking (OPL) is the standard technique for cloning the coherence of such sources, its effectiveness is often limited at high frequencies by feedback…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Tue Sep 01, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Chen Jia, Zhen-Xing Hua, Yu-Xin Chao, and Meng Khoon Tey</p><span>Ultra-narrow-linewidth lasers with suppressed high-frequency phase noise are critical for quantum control and precision metrology. While optical phase locking (OPL) is the standard technique for cloning the coherence of such sources, its effectiveness is often limited at high frequencies by feedback…</span><br/><p>[Phys. Rev. Applied] Published Tue Sep 01, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;High-bandwidth coherence cloning using optical-phase-locking feedforward&lt;/span&gt;</dc:title>
    <dc:creator>Chen Jia, Zhen-Xing Hua, Yu-Xin Chao, and Meng Khoon Tey</dc:creator>
    <dc:date>2026-09-01T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/p8h6-qc1l</dc:identifier>
    <prism:doi>10.1103/p8h6-qc1l</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-09-01T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/7d075A4dEadEa31460d981f5bb327c35984ed49c8</prism:url>
    <dc:subject>Letters</dc:subject>
    <prism:section>Letters</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/1a07aA85A7a10106f62064b1b667df35722e9da60">
    <title>&lt;span&gt;Microscopy of bioelectric potentials using electrochromism&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/1a07aA85A7a10106f62064b1b667df35722e9da60</link>
    <description>Author(s): Burhan Ahmed, Erica Liu, Lothar Maisenbacher, Pengwei Sun, Dana Griffith, Kenneth Nakasone, Ashwin Singh, Yuecheng Zhou, Bianxiao Cui, and Holger Müller&lt;br/&gt;&lt;span&gt;Studying the electrical signals generated by living cells is key to understanding numerous biological phenomena. Electrochromic optical recording (ECORE) uses the electrochromism exhibited by certain materials to noninvasively measure these signals in real time. In this work, we report on the develo…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Tue Sep 01, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Burhan Ahmed, Erica Liu, Lothar Maisenbacher, Pengwei Sun, Dana Griffith, Kenneth Nakasone, Ashwin Singh, Yuecheng Zhou, Bianxiao Cui, and Holger Müller</p><span>Studying the electrical signals generated by living cells is key to understanding numerous biological phenomena. Electrochromic optical recording (ECORE) uses the electrochromism exhibited by certain materials to noninvasively measure these signals in real time. In this work, we report on the develo…</span><br/><p>[Phys. Rev. Applied] Published Tue Sep 01, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Microscopy of bioelectric potentials using electrochromism&lt;/span&gt;</dc:title>
    <dc:creator>Burhan Ahmed, Erica Liu, Lothar Maisenbacher, Pengwei Sun, Dana Griffith, Kenneth Nakasone, Ashwin Singh, Yuecheng Zhou, Bianxiao Cui, and Holger Müller</dc:creator>
    <dc:date>2026-09-01T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/p947-mlyb</dc:identifier>
    <prism:doi>10.1103/p947-mlyb</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-09-01T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/1a07aA85A7a10106f62064b1b667df35722e9da60</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/6507bA65F7118c0305ef6fe66473213dc8bb674cb">
    <title>&lt;span&gt;Self-seeded x-ray free-electron laser with high spectral density and photon energy&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/6507bA65F7118c0305ef6fe66473213dc8bb674cb</link>
    <description>Author(s): Lu Cao, Tianyun Long, Winfried Decking, Marc Guetg, Vitali Kocharyan, Naresh Kujala, Christoph Lechner, Anders Madsen, Theophilos Maltezopoulos, Giovanni Perosa, Weilun Qin, Evgeni Saldin, Matthias Scholz, Svitozar Serkez, Andrei Trebushinin, Jiawei Yan, Shan Liu, and Gianluca Geloni&lt;br/&gt;&lt;span&gt;Hard X-ray experiments, such as high-resolution imaging and scattering of complex materials, increasingly demand pulses from X-ray free-electron lasers (XFELs) with high photon energy, high spectral density, and narrow bandwidth. Here, we report the demonstration of hard X-ray self-seeding (HXRSS) a…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 31, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Lu Cao, Tianyun Long, Winfried Decking, Marc Guetg, Vitali Kocharyan, Naresh Kujala, Christoph Lechner, Anders Madsen, Theophilos Maltezopoulos, Giovanni Perosa, Weilun Qin, Evgeni Saldin, Matthias Scholz, Svitozar Serkez, Andrei Trebushinin, Jiawei Yan, Shan Liu, and Gianluca Geloni</p><span>Hard X-ray experiments, such as high-resolution imaging and scattering of complex materials, increasingly demand pulses from X-ray free-electron lasers (XFELs) with high photon energy, high spectral density, and narrow bandwidth. Here, we report the demonstration of hard X-ray self-seeding (HXRSS) a…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 31, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Self-seeded x-ray free-electron laser with high spectral density and photon energy&lt;/span&gt;</dc:title>
    <dc:creator>Lu Cao, Tianyun Long, Winfried Decking, Marc Guetg, Vitali Kocharyan, Naresh Kujala, Christoph Lechner, Anders Madsen, Theophilos Maltezopoulos, Giovanni Perosa, Weilun Qin, Evgeni Saldin, Matthias Scholz, Svitozar Serkez, Andrei Trebushinin, Jiawei Yan, Shan Liu, and Gianluca Geloni</dc:creator>
    <dc:date>2026-08-31T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/gfpd-6bvp</dc:identifier>
    <prism:doi>10.1103/gfpd-6bvp</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-31T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/6507bA65F7118c0305ef6fe66473213dc8bb674cb</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/4a079Ac9G50Ea51a7003711084b4e1203e08b1d31">
    <title>&lt;span&gt;Microscopic theory of the lower critical field in superconducting thin-film strips&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/4a079Ac9G50Ea51a7003711084b4e1203e08b1d31</link>
    <description>Author(s): Takayuki Kubo&lt;br/&gt;&lt;span&gt;The lower critical field Bc1 of a narrow superconducting thin-film strip sets the thermodynamic scale for vortex-free operation in a perpendicular magnetic field. The standard Pearl–London estimate requires a phenomenological vortex-core cutoff, because the London theory does not resolve the core. W…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 31, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Takayuki Kubo</p><span>The lower critical field Bc1 of a narrow superconducting thin-film strip sets the thermodynamic scale for vortex-free operation in a perpendicular magnetic field. The standard Pearl–London estimate requires a phenomenological vortex-core cutoff, because the London theory does not resolve the core. W…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 31, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Microscopic theory of the lower critical field in superconducting thin-film strips&lt;/span&gt;</dc:title>
    <dc:creator>Takayuki Kubo</dc:creator>
    <dc:date>2026-08-31T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/l9v7-x1zb</dc:identifier>
    <prism:doi>10.1103/l9v7-x1zb</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-31T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/4a079Ac9G50Ea51a7003711084b4e1203e08b1d31</prism:url>
    <dc:subject>Letters</dc:subject>
    <prism:section>Letters</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/05076K0fT921cc10e0613b612b2a92ea8a80bcc73">
    <title>&lt;span&gt;Neural-network-based design and implementation of fast and robust quantum gates&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/05076K0fT921cc10e0613b612b2a92ea8a80bcc73</link>
    <description>Author(s): Marko Kuzmanović, Ilya Moskalenko, Yu-Han Chang, Ognjen Stanisavljević, Christopher Warren, Emil Hogedal, Anuj Aggarwal, Irshad Ahmad, Janka Biznárová, Mamta Dahiya, Marcus Rommel, Andreas Nylander, Giovanna Tancredi, and Gheorghe Sorin Paraoanu&lt;br/&gt;&lt;span&gt;We present a continuous-time, neural-network-based approach to optimal control in quantum systems, with a focus on pulse engineering for quantum gates. Leveraging the framework of neural ordinary differential equations (Neural ODEs), we construct control fields as outputs of trainable neural network…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 31, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Marko Kuzmanović, Ilya Moskalenko, Yu-Han Chang, Ognjen Stanisavljević, Christopher Warren, Emil Hogedal, Anuj Aggarwal, Irshad Ahmad, Janka Biznárová, Mamta Dahiya, Marcus Rommel, Andreas Nylander, Giovanna Tancredi, and Gheorghe Sorin Paraoanu</p><span>We present a continuous-time, neural-network-based approach to optimal control in quantum systems, with a focus on pulse engineering for quantum gates. Leveraging the framework of neural ordinary differential equations (Neural ODEs), we construct control fields as outputs of trainable neural network…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 31, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Neural-network-based design and implementation of fast and robust quantum gates&lt;/span&gt;</dc:title>
    <dc:creator>Marko Kuzmanović, Ilya Moskalenko, Yu-Han Chang, Ognjen Stanisavljević, Christopher Warren, Emil Hogedal, Anuj Aggarwal, Irshad Ahmad, Janka Biznárová, Mamta Dahiya, Marcus Rommel, Andreas Nylander, Giovanna Tancredi, and Gheorghe Sorin Paraoanu</dc:creator>
    <dc:date>2026-08-31T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/4zzl-qbsf</dc:identifier>
    <prism:doi>10.1103/4zzl-qbsf</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-31T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/05076K0fT921cc10e0613b612b2a92ea8a80bcc73</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/34075Ad9Dcb11b0e07fa22f1aee3b3aaaa0697f76">
    <title>&lt;span&gt;Asymptotic stability of laser-driven lightsails: Enhancement by optical dispersion engineering in gratings&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/34075Ad9Dcb11b0e07fa22f1aee3b3aaaa0697f76</link>
    <description>Author(s): Jadon Y. Lin, Liam van Ravenstein, C. Martijn de Sterke, Michael S. Wheatland, Alex Y. Song, and Boris T. Kuhlmey&lt;br/&gt;&lt;span&gt;Lightsails are promising spacecraft that can traverse interstellar distances within decades via radiation-pressure propulsion from high-power lasers. The envisioned missions crucially rely on the sail being confined within the propelling laser beam, requiring restoring and damping mechanisms for bot…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 31, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Jadon Y. Lin, Liam van Ravenstein, C. Martijn de Sterke, Michael S. Wheatland, Alex Y. Song, and Boris T. Kuhlmey</p><span>Lightsails are promising spacecraft that can traverse interstellar distances within decades via radiation-pressure propulsion from high-power lasers. The envisioned missions crucially rely on the sail being confined within the propelling laser beam, requiring restoring and damping mechanisms for bot…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 31, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Asymptotic stability of laser-driven lightsails: Enhancement by optical dispersion engineering in gratings&lt;/span&gt;</dc:title>
    <dc:creator>Jadon Y. Lin, Liam van Ravenstein, C. Martijn de Sterke, Michael S. Wheatland, Alex Y. Song, and Boris T. Kuhlmey</dc:creator>
    <dc:date>2026-08-31T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/f6h2-9ql5</dc:identifier>
    <prism:doi>10.1103/f6h2-9ql5</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-31T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/34075Ad9Dcb11b0e07fa22f1aee3b3aaaa0697f76</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/86079A58De811e0426db2e32de8c8db46fc31bbc4">
    <title>&lt;span&gt;Analytical framework for controlling antenna performance using near-zero-index metamaterials&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/86079A58De811e0426db2e32de8c8db46fc31bbc4</link>
    <description>Author(s): Amir Jafargholi and Romain Fleury&lt;br/&gt;&lt;span&gt;In the antenna community, there has always been a fundamental question: how can we control antenna behavior, e.g., resonant frequency, bandwidth, and mutual coupling in an array, solely by changing materials surrounding the radiating current? To answer this, we analyze the role of a magneto-dielectr…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 31, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Amir Jafargholi and Romain Fleury</p><span>In the antenna community, there has always been a fundamental question: how can we control antenna behavior, e.g., resonant frequency, bandwidth, and mutual coupling in an array, solely by changing materials surrounding the radiating current? To answer this, we analyze the role of a magneto-dielectr…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 31, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Analytical framework for controlling antenna performance using near-zero-index metamaterials&lt;/span&gt;</dc:title>
    <dc:creator>Amir Jafargholi and Romain Fleury</dc:creator>
    <dc:date>2026-08-31T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/cxrs-z168</dc:identifier>
    <prism:doi>10.1103/cxrs-z168</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-31T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/86079A58De811e0426db2e32de8c8db46fc31bbc4</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/3b07dAccCf41570b055105708eaa83727d813ad67">
    <title>&lt;span&gt;Modular and integrable cryogen-free dilution refrigerator&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/3b07dAccCf41570b055105708eaa83727d813ad67</link>
    <description>Author(s): Xiang Guan, Pei Liu, De Ming Wang, Yong Jie Xie, Yu Qun Xu, Jie Fan, Zhong Qing Ji, Yi Rong Jin, and Haifeng Yu&lt;br/&gt;&lt;span&gt;Abstract: We have developed two modular dilution refrigerators with a cooling power on the order of 1 mW at 100 mK and 20 μW at 20 mK, and further carried out joint operation by integrating the two modular units. In the integrated configuration, the base temperatures of the mixing chamber cold plate…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 31, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Xiang Guan, Pei Liu, De Ming Wang, Yong Jie Xie, Yu Qun Xu, Jie Fan, Zhong Qing Ji, Yi Rong Jin, and Haifeng Yu</p><span>Abstract: We have developed two modular dilution refrigerators with a cooling power on the order of 1 mW at 100 mK and 20 μW at 20 mK, and further carried out joint operation by integrating the two modular units. In the integrated configuration, the base temperatures of the mixing chamber cold plate…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 31, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Modular and integrable cryogen-free dilution refrigerator&lt;/span&gt;</dc:title>
    <dc:creator>Xiang Guan, Pei Liu, De Ming Wang, Yong Jie Xie, Yu Qun Xu, Jie Fan, Zhong Qing Ji, Yi Rong Jin, and Haifeng Yu</dc:creator>
    <dc:date>2026-08-31T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/lpcw-bm1q</dc:identifier>
    <prism:doi>10.1103/lpcw-bm1q</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-31T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/3b07dAccCf41570b055105708eaa83727d813ad67</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/b9072AadA061ff06f6dd4155b25ce509504009947">
    <title>&lt;span&gt;Robust nonadiabatic holonomic gating in qutrits via inverse-engineered pulse shaping and error compensation&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/b9072AadA061ff06f6dd4155b25ce509504009947</link>
    <description>Author(s): Jie Lu, Ji-Ze Han, Jie-Dong Huang, Yang Qian, Ying Yan, and Zhi-Guo Huang&lt;br/&gt;&lt;span&gt;Systematic Rabi-amplitude and detuning errors remain important sources of infidelity in high-fidelity quantum gates. We develop a robust pulse-engineering scheme for non-adiabatic holonomic quantum computing in a three-level $Λ$-type qutrit, combining inverse engineering with time-dependent perturba…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 31, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Jie Lu, Ji-Ze Han, Jie-Dong Huang, Yang Qian, Ying Yan, and Zhi-Guo Huang</p><span>Systematic Rabi-amplitude and detuning errors remain important sources of infidelity in high-fidelity quantum gates. We develop a robust pulse-engineering scheme for non-adiabatic holonomic quantum computing in a three-level <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mi>Λ</mi></math>-type qutrit, combining inverse engineering with time-dependent perturbati…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 31, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Robust nonadiabatic holonomic gating in qutrits via inverse-engineered pulse shaping and error compensation&lt;/span&gt;</dc:title>
    <dc:creator>Jie Lu, Ji-Ze Han, Jie-Dong Huang, Yang Qian, Ying Yan, and Zhi-Guo Huang</dc:creator>
    <dc:date>2026-08-31T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/sqwc-554s</dc:identifier>
    <prism:doi>10.1103/sqwc-554s</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-31T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/b9072AadA061ff06f6dd4155b25ce509504009947</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/19073A53E791a309d55f05809eb9ea62c3b942dcf">
    <title>&lt;span&gt;Hybrid quantum interferometer bridging Hong-Ou-Mandel and NOON-state interference&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/19073A53E791a309d55f05809eb9ea62c3b942dcf</link>
    <description>Author(s): Zi-Qi Zeng, Samuel Corona-Aquino, Tao Xie, Bin Yin, Yan Guo, Yukun Song, Yun Meng, Kai Zou, Song Li, Xiaolong Hu, Alfred B. U’Ren, Roberto de J. León-Montiel, Chenglong You, Baihong Li, Dongzhou Wang, and Rui-Bo Jin&lt;br/&gt;&lt;span&gt;Hong-Ou-Mandel (HOM) interference offers robustness in high-noise environments due to its phase-insensitive nature, while N00N-state interference provides enhanced phase sensitivity for precision measurements in low-noise settings. However, their realizations have typically required separate experim…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 31, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Zi-Qi Zeng, Samuel Corona-Aquino, Tao Xie, Bin Yin, Yan Guo, Yukun Song, Yun Meng, Kai Zou, Song Li, Xiaolong Hu, Alfred B. U’Ren, Roberto de J. León-Montiel, Chenglong You, Baihong Li, Dongzhou Wang, and Rui-Bo Jin</p><span>Hong-Ou-Mandel (HOM) interference offers robustness in high-noise environments due to its phase-insensitive nature, while N00N-state interference provides enhanced phase sensitivity for precision measurements in low-noise settings. However, their realizations have typically required separate experim…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 31, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Hybrid quantum interferometer bridging Hong-Ou-Mandel and NOON-state interference&lt;/span&gt;</dc:title>
    <dc:creator>Zi-Qi Zeng, Samuel Corona-Aquino, Tao Xie, Bin Yin, Yan Guo, Yukun Song, Yun Meng, Kai Zou, Song Li, Xiaolong Hu, Alfred B. U’Ren, Roberto de J. León-Montiel, Chenglong You, Baihong Li, Dongzhou Wang, and Rui-Bo Jin</dc:creator>
    <dc:date>2026-08-31T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/pd91-dyf9</dc:identifier>
    <prism:doi>10.1103/pd91-dyf9</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-31T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/19073A53E791a309d55f05809eb9ea62c3b942dcf</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/38078A4fD1b1a202855b8062a3800df87b93ec231">
    <title>&lt;span&gt;Bridging fidelity gaps in the design of triply periodic minimal surfaces-based elastic metamaterials using neural networks&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/38078A4fD1b1a202855b8062a3800df87b93ec231</link>
    <description>Author(s): Yu-Tong Wang, Andrew Fanton, and Yun Jing&lt;br/&gt;&lt;span&gt;This study addresses the persistent multi-fidelity gap between numerical simulations and experimental observations in the design of elastic metamaterials, specifically focusing on wave transmission spectra of the triply periodic minimal surface (TPMS) lattices. We propose the Dual Elastic Alignment …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 31, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Yu-Tong Wang, Andrew Fanton, and Yun Jing</p><span>This study addresses the persistent multi-fidelity gap between numerical simulations and experimental observations in the design of elastic metamaterials, specifically focusing on wave transmission spectra of the triply periodic minimal surface (TPMS) lattices. We propose the Dual Elastic Alignment …</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 31, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Bridging fidelity gaps in the design of triply periodic minimal surfaces-based elastic metamaterials using neural networks&lt;/span&gt;</dc:title>
    <dc:creator>Yu-Tong Wang, Andrew Fanton, and Yun Jing</dc:creator>
    <dc:date>2026-08-31T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/34rf-v1d7</dc:identifier>
    <prism:doi>10.1103/34rf-v1d7</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-31T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/38078A4fD1b1a202855b8062a3800df87b93ec231</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/74074Ad9Z6a18d0ca52b6849d37c10d811b8b4078">
    <title>&lt;span&gt;Spectral side channels of wavelength-division multiplexer in quantum key distribution under laser damage&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/74074Ad9Z6a18d0ca52b6849d37c10d811b8b4078</link>
    <description>Author(s): Binwu Gao, Junxuan Liu, Ekaterina Borisova, Hao Tan, Mingyang Zhong, Zihao Chen, Qingquan Peng, Weixu Shi, Anastasiya Ponosova, Vadim Makarov, and Anqi Huang&lt;br/&gt;&lt;span&gt;In the transmitter of a quantum key distribution (QKD) system, a wavelength-division multiplexer (WDM) is typically used to combine quantum and synchronization signals and is directly connected to the quantum channel. As a result, it becomes the first optical component exposed to laser-injection att…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Fri Aug 28, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Binwu Gao, Junxuan Liu, Ekaterina Borisova, Hao Tan, Mingyang Zhong, Zihao Chen, Qingquan Peng, Weixu Shi, Anastasiya Ponosova, Vadim Makarov, and Anqi Huang</p><span>In the transmitter of a quantum key distribution (QKD) system, a wavelength-division multiplexer (WDM) is typically used to combine quantum and synchronization signals and is directly connected to the quantum channel. As a result, it becomes the first optical component exposed to laser-injection att…</span><br/><p>[Phys. Rev. Applied] Published Fri Aug 28, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Spectral side channels of wavelength-division multiplexer in quantum key distribution under laser damage&lt;/span&gt;</dc:title>
    <dc:creator>Binwu Gao, Junxuan Liu, Ekaterina Borisova, Hao Tan, Mingyang Zhong, Zihao Chen, Qingquan Peng, Weixu Shi, Anastasiya Ponosova, Vadim Makarov, and Anqi Huang</dc:creator>
    <dc:date>2026-08-28T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/33cb-kvyp</dc:identifier>
    <prism:doi>10.1103/33cb-kvyp</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-28T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/74074Ad9Z6a18d0ca52b6849d37c10d811b8b4078</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/1d07fA31Ac810307e6da30620540a0f7f8a76296f">
    <title>&lt;span&gt;Rf quantum capacitance parametric amplifier&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/1d07fA31Ac810307e6da30620540a0f7f8a76296f</link>
    <description>Author(s): A. El Kass, B Harlech-Jones, C. T. Jin, J. D. Watson, G. C. Gardner, S. Fallahi, M. J. Manfra, T. A. Ohki, and D. J. Reilly&lt;br/&gt;&lt;span&gt;We report an rf parametric amplifier that exploits the gate-tunable quantum capacitance of a semiconductor two dimensional electron gas (2DEG) at cryogenic temperatures. The prototype amplifier exhibits a gain ∼ 30 dB up to an input power of −66 dBm, and a noise temperature TN ∼ 2 K at ∼ 370 MHz whi…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Fri Aug 28, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): A. El Kass, B Harlech-Jones, C. T. Jin, J. D. Watson, G. C. Gardner, S. Fallahi, M. J. Manfra, T. A. Ohki, and D. J. Reilly</p><span>We report an rf parametric amplifier that exploits the gate-tunable quantum capacitance of a semiconductor two dimensional electron gas (2DEG) at cryogenic temperatures. The prototype amplifier exhibits a gain ∼ 30 dB up to an input power of −66 dBm, and a noise temperature TN ∼ 2 K at ∼ 370 MHz whi…</span><br/><p>[Phys. Rev. Applied] Published Fri Aug 28, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Rf quantum capacitance parametric amplifier&lt;/span&gt;</dc:title>
    <dc:creator>A. El Kass, B Harlech-Jones, C. T. Jin, J. D. Watson, G. C. Gardner, S. Fallahi, M. J. Manfra, T. A. Ohki, and D. J. Reilly</dc:creator>
    <dc:date>2026-08-28T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/3146-fgdw</dc:identifier>
    <prism:doi>10.1103/3146-fgdw</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-28T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/1d07fA31Ac810307e6da30620540a0f7f8a76296f</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/9607dA83C27Eeb12b0a56b73d8138c99f89d909c9">
    <title>&lt;span&gt;Nanoscale wireframe SQUID on a cantilever by corner lithography&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/9607dA83C27Eeb12b0a56b73d8138c99f89d909c9</link>
    <description>Author(s): Thijs J. Roskamp, Tim Horstink, Melissa J. Goodwin, Erwin Berenschot, Edin Sarajilic, Roeland Huijink, Niels Tas, and Hans Hilgenkamp&lt;br/&gt;&lt;span&gt;We present the fabrication of nanoscale superconducting quantum interference devices (SQUIDs) at the apex of wireframe tips on self-aligned superconducting cantilever probes. The probes are made on silicon wafers using molding techniques in combination with corner lithography, which results in a nan…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Fri Aug 28, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Thijs J. Roskamp, Tim Horstink, Melissa J. Goodwin, Erwin Berenschot, Edin Sarajilic, Roeland Huijink, Niels Tas, and Hans Hilgenkamp</p><span>We present the fabrication of nanoscale superconducting quantum interference devices (SQUIDs) at the apex of wireframe tips on self-aligned superconducting cantilever probes. The probes are made on silicon wafers using molding techniques in combination with corner lithography, which results in a nan…</span><br/><p>[Phys. Rev. Applied] Published Fri Aug 28, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Nanoscale wireframe SQUID on a cantilever by corner lithography&lt;/span&gt;</dc:title>
    <dc:creator>Thijs J. Roskamp, Tim Horstink, Melissa J. Goodwin, Erwin Berenschot, Edin Sarajilic, Roeland Huijink, Niels Tas, and Hans Hilgenkamp</dc:creator>
    <dc:date>2026-08-28T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/3qfq-4458</dc:identifier>
    <prism:doi>10.1103/3qfq-4458</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-28T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/9607dA83C27Eeb12b0a56b73d8138c99f89d909c9</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/5207eK1fZ0618905086b8106cee63aadea7a52bb0">
    <title>&lt;span&gt;Machine-learning-assisted tracking of magnetic objects using quantum diamond magnetometry&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/5207eK1fZ0618905086b8106cee63aadea7a52bb0</link>
    <description>Author(s): Fernando Meneses, Christopher T. -K. Lew, Anand Sivamalai, Andy Sayers, Brant C. Gibson, Andrew D. Greentree, Lloyd C. L. Hollenberg, and David A. Simpson&lt;br/&gt;&lt;span&gt;Remote magnetic sensing can be used to monitor the position of objects in real-time, enabling ground transport monitoring, underground infrastructure mapping and hazardous detection. However, magnetic signals are typically weak and complex, requiring sophisticated physical models to analyze them and…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Thu Aug 27, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Fernando Meneses, Christopher T. -K. Lew, Anand Sivamalai, Andy Sayers, Brant C. Gibson, Andrew D. Greentree, Lloyd C. L. Hollenberg, and David A. Simpson</p><span>Remote magnetic sensing can be used to monitor the position of objects in real-time, enabling ground transport monitoring, underground infrastructure mapping and hazardous detection. However, magnetic signals are typically weak and complex, requiring sophisticated physical models to analyze them and…</span><br/><p>[Phys. Rev. Applied] Published Thu Aug 27, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Machine-learning-assisted tracking of magnetic objects using quantum diamond magnetometry&lt;/span&gt;</dc:title>
    <dc:creator>Fernando Meneses, Christopher T. -K. Lew, Anand Sivamalai, Andy Sayers, Brant C. Gibson, Andrew D. Greentree, Lloyd C. L. Hollenberg, and David A. Simpson</dc:creator>
    <dc:date>2026-08-27T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/vjtb-d8kb</dc:identifier>
    <prism:doi>10.1103/vjtb-d8kb</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-27T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/5207eK1fZ0618905086b8106cee63aadea7a52bb0</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/6b07dA0dA3011b0745032b8144af4523121bb5398">
    <title>&lt;span&gt;Compressed qubit noise spectroscopy: Piecewise-linear modeling and Rademacher measurements&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/6b07dA0dA3011b0745032b8144af4523121bb5398</link>
    <description>Author(s): Kaixin Huang, Demitry Farfurnik, Dror Baron, and Yi-Kai Liu&lt;br/&gt;&lt;span&gt;Random pulse sequences are a powerful method for qubit noise spectroscopy, enabling efficient reconstruction of sparse noise spectra. Here, we advance this method in two complementary directions. First, we extend the method using a regularizer based on the total generalized variation (TGV) norm, in …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Wed Aug 26, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Kaixin Huang, Demitry Farfurnik, Dror Baron, and Yi-Kai Liu</p><span>Random pulse sequences are a powerful method for qubit noise spectroscopy, enabling efficient reconstruction of sparse noise spectra. Here, we advance this method in two complementary directions. First, we extend the method using a regularizer based on the total generalized variation (TGV) norm, in …</span><br/><p>[Phys. Rev. Applied] Published Wed Aug 26, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Compressed qubit noise spectroscopy: Piecewise-linear modeling and Rademacher measurements&lt;/span&gt;</dc:title>
    <dc:creator>Kaixin Huang, Demitry Farfurnik, Dror Baron, and Yi-Kai Liu</dc:creator>
    <dc:date>2026-08-26T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/r813-2yvm</dc:identifier>
    <prism:doi>10.1103/r813-2yvm</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-26T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/6b07dA0dA3011b0745032b8144af4523121bb5398</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/c0071D9dT9c1b60ac2123f92951b97cb9bcaf3740">
    <title>&lt;span&gt;Circulators based on coupled quantum anomalous Hall insulators and resonators&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/c0071D9dT9c1b60ac2123f92951b97cb9bcaf3740</link>
    <description>Author(s): Luis A. Martinez, Nick Du, Nicholas Materise, Sean O’Kelley, Xian Wu, Gang Qiu, Kang L. Wang, Gianpaolo P. Carosi, Tony Low, and Dong-Xia Qu&lt;br/&gt;&lt;span&gt;Integrated plasmonics is advancing rapidly, enabling a wide range of functionalities to be incorporated onto a single chip. Applications span information processing, computation, quantum sensing, and dark-matter detection. This progress has driven the development of integrated non-reciprocal devices…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 24, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Luis A. Martinez, Nick Du, Nicholas Materise, Sean O’Kelley, Xian Wu, Gang Qiu, Kang L. Wang, Gianpaolo P. Carosi, Tony Low, and Dong-Xia Qu</p><span>Integrated plasmonics is advancing rapidly, enabling a wide range of functionalities to be incorporated onto a single chip. Applications span information processing, computation, quantum sensing, and dark-matter detection. This progress has driven the development of integrated non-reciprocal devices…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 24, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Circulators based on coupled quantum anomalous Hall insulators and resonators&lt;/span&gt;</dc:title>
    <dc:creator>Luis A. Martinez, Nick Du, Nicholas Materise, Sean O’Kelley, Xian Wu, Gang Qiu, Kang L. Wang, Gianpaolo P. Carosi, Tony Low, and Dong-Xia Qu</dc:creator>
    <dc:date>2026-08-24T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/c5hf-mn4s</dc:identifier>
    <prism:doi>10.1103/c5hf-mn4s</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-24T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/c0071D9dT9c1b60ac2123f92951b97cb9bcaf3740</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/2c07fY5eF8f2220593007767418de84adfc2f78c7">
    <title>&lt;span&gt;Convex preoptimization for electromagnetic inverse design&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/2c07fY5eF8f2220593007767418de84adfc2f78c7</link>
    <description>Author(s): Nathaniel Morrison, Xujia He, Siqi Zhai, and Eric Y. Ma&lt;br/&gt;&lt;span&gt;Photonic and microwave devices are foundational elements of both precision physics experiments and modern telecommunications and sensing technology. Electromagnetic inverse design intelligently searches for devices that optimally fulfill a particular task. However, most realistic design tasks are hi…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 24, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Nathaniel Morrison, Xujia He, Siqi Zhai, and Eric Y. Ma</p><span>Photonic and microwave devices are foundational elements of both precision physics experiments and modern telecommunications and sensing technology. Electromagnetic inverse design intelligently searches for devices that optimally fulfill a particular task. However, most realistic design tasks are hi…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 24, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Convex preoptimization for electromagnetic inverse design&lt;/span&gt;</dc:title>
    <dc:creator>Nathaniel Morrison, Xujia He, Siqi Zhai, and Eric Y. Ma</dc:creator>
    <dc:date>2026-08-24T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/lh46-y9hy</dc:identifier>
    <prism:doi>10.1103/lh46-y9hy</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-24T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/2c07fY5eF8f2220593007767418de84adfc2f78c7</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/56077Dd8M241cd09b11855b049c19739c2c41b65e">
    <title>&lt;span&gt;Dimensionality reduction for closed-loop quantum gate calibration&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/56077Dd8M241cd09b11855b049c19739c2c41b65e</link>
    <description>Author(s): Emma Berger, Vivek Maurya, Z. M. McIntyre, Ken Xuan Wei, Holger Haas, and Daniel Puzzuoli&lt;br/&gt;&lt;span&gt;Numerical gate design typically makes use of high-dimensional parameterizations enabling sophisticated, highly expressive control pulses. Developing efficient experimental calibration methods for such gates is a long-standing challenge in quantum control, as on-device calibration requires the optimi…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 24, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Emma Berger, Vivek Maurya, Z. M. McIntyre, Ken Xuan Wei, Holger Haas, and Daniel Puzzuoli</p><span>Numerical gate design typically makes use of high-dimensional parameterizations enabling sophisticated, highly expressive control pulses. Developing efficient experimental calibration methods for such gates is a long-standing challenge in quantum control, as on-device calibration requires the optimi…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 24, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Dimensionality reduction for closed-loop quantum gate calibration&lt;/span&gt;</dc:title>
    <dc:creator>Emma Berger, Vivek Maurya, Z. M. McIntyre, Ken Xuan Wei, Holger Haas, and Daniel Puzzuoli</dc:creator>
    <dc:date>2026-08-24T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/w2v4-7pvc</dc:identifier>
    <prism:doi>10.1103/w2v4-7pvc</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-24T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/56077Dd8M241cd09b11855b049c19739c2c41b65e</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/01072Af9Ac918008762c3298b9274b1e7b24703bb">
    <title>&lt;span&gt;Multivalued quantum encoding protocol based on the N-$V$ center in diamond&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/01072Af9Ac918008762c3298b9274b1e7b24703bb</link>
    <description>Author(s): Yifan Zhang, Yanjie Liu, Yue Fu, Minghui Wu, Yikun Mei, Yeliang Wang, Zhen Gao, and Bo Zhang&lt;br/&gt;&lt;span&gt;Multi-valued quantum encoding maps a classical alphabet of $M&amp;gt;2$ symbols onto multiple prescribed states. Here, we experimentally demonstrate multi-valued quantum encoding in an effective two-level subspace of the electron spin of a nitrogen-vacancy center in diamond at room temperature. Classica…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 24, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Yifan Zhang, Yanjie Liu, Yue Fu, Minghui Wu, Yikun Mei, Yeliang Wang, Zhen Gao, and Bo Zhang</p><span>Multi-valued quantum encoding maps a classical alphabet of <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mi>M</mi><mo>&gt;</mo><mn>2</mn></mrow></math> symbols onto multiple prescribed states. Here, we experimentally demonstrate multi-valued quantum encoding in an effective two-level subspace of the electron spin of a nitrogen-vacancy center in diamond at room temperature. Classical …</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 24, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Multivalued quantum encoding protocol based on the N-$V$ center in diamond&lt;/span&gt;</dc:title>
    <dc:creator>Yifan Zhang, Yanjie Liu, Yue Fu, Minghui Wu, Yikun Mei, Yeliang Wang, Zhen Gao, and Bo Zhang</dc:creator>
    <dc:date>2026-08-24T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/r6jz-nmqm</dc:identifier>
    <prism:doi>10.1103/r6jz-nmqm</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-24T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/01072Af9Ac918008762c3298b9274b1e7b24703bb</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/9b07bAacEb31550555c2730570c955fee15c18824">
    <title>&lt;span&gt;Investigating spectral dynamics and spin signatures of a mechanically isolated quantum emitter in hBN&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/9b07bAacEb31550555c2730570c955fee15c18824</link>
    <description>Author(s): Sajedeh Shahbazi, Alexander Pachl, Kathrin Schwer, Patrick Maier, and Alexander Kubanek&lt;br/&gt;&lt;span&gt;Mechanically isolated defect centers in hexagonal boron nitride are promising coherent quantum emitters, yet spectral instabilities persist, and their spin-related nature remains unclear. Here we investigate a single mechanically isolated quantum emitter in hBN integrated onto a coplanar waveguide. …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 24, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Sajedeh Shahbazi, Alexander Pachl, Kathrin Schwer, Patrick Maier, and Alexander Kubanek</p><span>Mechanically isolated defect centers in hexagonal boron nitride are promising coherent quantum emitters, yet spectral instabilities persist, and their spin-related nature remains unclear. Here we investigate a single mechanically isolated quantum emitter in hBN integrated onto a coplanar waveguide. …</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 24, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Investigating spectral dynamics and spin signatures of a mechanically isolated quantum emitter in hBN&lt;/span&gt;</dc:title>
    <dc:creator>Sajedeh Shahbazi, Alexander Pachl, Kathrin Schwer, Patrick Maier, and Alexander Kubanek</dc:creator>
    <dc:date>2026-08-24T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/m3gt-9g4v</dc:identifier>
    <prism:doi>10.1103/m3gt-9g4v</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-24T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/9b07bAacEb31550555c2730570c955fee15c18824</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/ff073A0bI97R111020a906e3f56ce22df1a213f33">
    <title>&lt;span&gt;Erratum: &lt;em&gt;In situ&lt;/em&gt; quantum verification of polarization-stabilized optical channels [Phys. Rev. Applied &lt;strong&gt;25&lt;/strong&gt;, 034090 (2026)]&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/ff073A0bI97R111020a906e3f56ce22df1a213f33</link>
    <description>Author(s): Matthew L. Stevens, Noah I. Wasserbeck, Zachary Goisman, Arefur Rahman, John Michael Record, Taman Truong, Ariq Haqq, Muneer Alshowkan, Brian T. Kirby, Nils T. Otterstrom, and Joseph M. Lukens&lt;br/&gt;[Phys. Rev. Applied] Published Fri Aug 21, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Matthew L. Stevens, Noah I. Wasserbeck, Zachary Goisman, Arefur Rahman, John Michael Record, Taman Truong, Ariq Haqq, Muneer Alshowkan, Brian T. Kirby, Nils T. Otterstrom, and Joseph M. Lukens</p><p>[Phys. Rev. Applied] Published Fri Aug 21, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Erratum: &lt;em&gt;In situ&lt;/em&gt; quantum verification of polarization-stabilized optical channels [Phys. Rev. Applied &lt;strong&gt;25&lt;/strong&gt;, 034090 (2026)]&lt;/span&gt;</dc:title>
    <dc:creator>Matthew L. Stevens, Noah I. Wasserbeck, Zachary Goisman, Arefur Rahman, John Michael Record, Taman Truong, Ariq Haqq, Muneer Alshowkan, Brian T. Kirby, Nils T. Otterstrom, and Joseph M. Lukens</dc:creator>
    <dc:date>2026-08-21T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/pgzp-dhrs</dc:identifier>
    <prism:doi>10.1103/pgzp-dhrs</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-21T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/ff073A0bI97R111020a906e3f56ce22df1a213f33</prism:url>
    <dc:subject>Errata</dc:subject>
    <prism:section>Errata</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/5f079AfeW2aEe61ca0296cf5cbe8db7da7d8bce42">
    <title>&lt;span&gt;Simple and compact ytterbium magneto-optical trap&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/5f079AfeW2aEe61ca0296cf5cbe8db7da7d8bce42</link>
    <description>Author(s): Benjamin White, Rachel F. Offer, Ashby P. Hilton, Elizaveta Klantsataya, Christopher J. Billington, Nicolas Bourbeau Hébert, Montanna Nelligan, and Andre N. Luiten&lt;br/&gt;&lt;span&gt;We present a low Size, Weight and Power (SWaP), low-complexity, ytterbium magneto-optical trap (MOT). We demonstrate trapping of $1.4×{10}^{6}$ ${}^{171}$Yb atoms on the $|{}^{1}{S}_{0},F=1/2⟩↔|{}^{1}{P}_{1},F′=3/2⟩$ transition directly from a hot thermal beam. We explore the effect of trap detuning…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Fri Aug 21, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Benjamin White, Rachel F. Offer, Ashby P. Hilton, Elizaveta Klantsataya, Christopher J. Billington, Nicolas Bourbeau Hébert, Montanna Nelligan, and Andre N. Luiten</p><span>We present a low Size, Weight and Power (SWaP), low-complexity, ytterbium magneto-optical trap (MOT). We demonstrate trapping of <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mn>1.4</mn><mo>×</mo><msup><mn>10</mn><mn>6</mn></msup></mrow></math> <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><msup><mi></mi><mn>171</mn></msup></math>Yb atoms on the <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mo stretchy="false" form="prefix">|</mo><msup><mi></mi><mn>1</mn></msup><msub><mi>S</mi><mn>0</mn></msub><mo>,</mo><mi>F</mi><mo>=</mo><mn>1</mn><mi>/</mi><mn>2</mn><mo stretchy="false" form="postfix">⟩</mo><mo>↔</mo><mo stretchy="false" form="prefix">|</mo><msup><mi></mi><mn>1</mn></msup><msub><mi>P</mi><mn>1</mn></msub><mo>,</mo><mi>F</mi><mi>′</mi><mo>=</mo><mn>3</mn><mi>/</mi><mn>2</mn><mo stretchy="false" form="postfix">⟩</mo></mrow></math> transition directly from a hot thermal beam. We explore the effect of trap detuning and oven temperature on trap number…</span><br/><p>[Phys. Rev. Applied] Published Fri Aug 21, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Simple and compact ytterbium magneto-optical trap&lt;/span&gt;</dc:title>
    <dc:creator>Benjamin White, Rachel F. Offer, Ashby P. Hilton, Elizaveta Klantsataya, Christopher J. Billington, Nicolas Bourbeau Hébert, Montanna Nelligan, and Andre N. Luiten</dc:creator>
    <dc:date>2026-08-21T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/7ghk-fwfq</dc:identifier>
    <prism:doi>10.1103/7ghk-fwfq</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-21T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/5f079AfeW2aEe61ca0296cf5cbe8db7da7d8bce42</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/b9076KfeMca1e404c84b8991e7cadd25a64793b2b">
    <title>&lt;span&gt;Spectrally reconfigurable tin-vacancy centers for remote two-photon interference&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/b9076KfeMca1e404c84b8991e7cadd25a64793b2b</link>
    <description>Author(s): Vladislav Bushmakin, Oliver von Berg, Colin Sauerzapf, Sreehari Jayaram, Jonathan Enßlin, Tom Jäger, Andrej Denisenko, Ilja Gerhardt, Vadim Vorobyov, Di Liu, and Jörg Wrachtrup&lt;br/&gt;&lt;span&gt;Scalable quantum networks rely on optical links between long-lived qubits to distribute entanglement. Tin-vacancy (SnV${}^{−}$) centers in diamond combine long spin coherence at liquid-helium temperatures with highly coherent, spin-dependent optical transitions, making them promising network qubits.…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Fri Aug 21, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Vladislav Bushmakin, Oliver von Berg, Colin Sauerzapf, Sreehari Jayaram, Jonathan Enßlin, Tom Jäger, Andrej Denisenko, Ilja Gerhardt, Vadim Vorobyov, Di Liu, and Jörg Wrachtrup</p><span>Scalable quantum networks rely on optical links between long-lived qubits to distribute entanglement. Tin-vacancy (SnV<math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><msup><mi></mi><mo>−</mo></msup></math>) centers in diamond combine long spin coherence at liquid-helium temperatures with highly coherent, spin-dependent optical transitions, making them promising network qubits. Connec…</span><br/><p>[Phys. Rev. Applied] Published Fri Aug 21, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Spectrally reconfigurable tin-vacancy centers for remote two-photon interference&lt;/span&gt;</dc:title>
    <dc:creator>Vladislav Bushmakin, Oliver von Berg, Colin Sauerzapf, Sreehari Jayaram, Jonathan Enßlin, Tom Jäger, Andrej Denisenko, Ilja Gerhardt, Vadim Vorobyov, Di Liu, and Jörg Wrachtrup</dc:creator>
    <dc:date>2026-08-21T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/cgf7-dd1b</dc:identifier>
    <prism:doi>10.1103/cgf7-dd1b</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-21T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/b9076KfeMca1e404c84b8991e7cadd25a64793b2b</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/8407cA40Ac61aa0955cc41797c44f18c2d75eace4">
    <title>&lt;span&gt;Laser-control switch for electron correlation in double ionization: Toward application-specific pathway selection&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/8407cA40Ac61aa0955cc41797c44f18c2d75eace4</link>
    <description>Author(s): Xuan Luo, Yugang Yang, Liguang Jiao, Aihua Liu, and Xueshen Liu&lt;br/&gt;&lt;span&gt;Controlling correlated electron dynamics is a central challenge in ultrafast science, with implications for the development of coherent light sources and quantum information technologies. Traditional methods for manipulating strong-field ionization processes often rely on complex laser fields, limit…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Thu Aug 20, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Xuan Luo, Yugang Yang, Liguang Jiao, Aihua Liu, and Xueshen Liu</p><span>Controlling correlated electron dynamics is a central challenge in ultrafast science, with implications for the development of coherent light sources and quantum information technologies. Traditional methods for manipulating strong-field ionization processes often rely on complex laser fields, limit…</span><br/><p>[Phys. Rev. Applied] Published Thu Aug 20, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Laser-control switch for electron correlation in double ionization: Toward application-specific pathway selection&lt;/span&gt;</dc:title>
    <dc:creator>Xuan Luo, Yugang Yang, Liguang Jiao, Aihua Liu, and Xueshen Liu</dc:creator>
    <dc:date>2026-08-20T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/gh3s-hzvr</dc:identifier>
    <prism:doi>10.1103/gh3s-hzvr</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-20T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/8407cA40Ac61aa0955cc41797c44f18c2d75eace4</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/b307bA36C851910055226cb9416f63cb8d50a98d5">
    <title>&lt;span&gt;High-fidelity quantum readout processing via an embedded SNAIL amplifier&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/b307bA36C851910055226cb9416f63cb8d50a98d5</link>
    <description>Author(s): Leon Bello, Boris Mesits, Michael Hatridge, and Hakan E. Türeci&lt;br/&gt;&lt;span&gt;Scalable, high-fidelity quantum-state readout remains a central challenge in the development of large-scale superconducting quantum processors. Conventional dispersive readout architectures depend on bulky isolators and external amplifiers, introducing significant hardware overhead and limiting oppo…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Wed Aug 19, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Leon Bello, Boris Mesits, Michael Hatridge, and Hakan E. Türeci</p><span>Scalable, high-fidelity quantum-state readout remains a central challenge in the development of large-scale superconducting quantum processors. Conventional dispersive readout architectures depend on bulky isolators and external amplifiers, introducing significant hardware overhead and limiting oppo…</span><br/><p>[Phys. Rev. Applied] Published Wed Aug 19, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;High-fidelity quantum readout processing via an embedded SNAIL amplifier&lt;/span&gt;</dc:title>
    <dc:creator>Leon Bello, Boris Mesits, Michael Hatridge, and Hakan E. Türeci</dc:creator>
    <dc:date>2026-08-19T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/nq9c-ftrm</dc:identifier>
    <prism:doi>10.1103/nq9c-ftrm</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-19T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/b307bA36C851910055226cb9416f63cb8d50a98d5</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/a8071A35Ce415502156e9808bdebe1a36ef699059">
    <title>&lt;span&gt;Mitigation of magnetic flux trapping in superconducting electronics using moats&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/a8071A35Ce415502156e9808bdebe1a36ef699059</link>
    <description>Author(s): Rohan T. Kapur, Sergey K. Tolpygo, Alex Wynn, Pauli Kehayias, Adam A. Libson, Collin N. Muniz, Michael J. Gold, Justin L. Mallek, Danielle A. Braje, and Jennifer M. Schloss&lt;br/&gt;&lt;span&gt;Magnetic flux (vortex) trapping remains a major obstacle to very large scale integration in superconducting electronics. Moats — etched regions in circuit layers placed in ground planes and around critical circuitry — offer a simple passive approach to sequester flux. Here, we systematically examine…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Wed Aug 19, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Rohan T. Kapur, Sergey K. Tolpygo, Alex Wynn, Pauli Kehayias, Adam A. Libson, Collin N. Muniz, Michael J. Gold, Justin L. Mallek, Danielle A. Braje, and Jennifer M. Schloss</p><span>Magnetic flux (vortex) trapping remains a major obstacle to very large scale integration in superconducting electronics. Moats — etched regions in circuit layers placed in ground planes and around critical circuitry — offer a simple passive approach to sequester flux. Here, we systematically examine…</span><br/><p>[Phys. Rev. Applied] Published Wed Aug 19, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Mitigation of magnetic flux trapping in superconducting electronics using moats&lt;/span&gt;</dc:title>
    <dc:creator>Rohan T. Kapur, Sergey K. Tolpygo, Alex Wynn, Pauli Kehayias, Adam A. Libson, Collin N. Muniz, Michael J. Gold, Justin L. Mallek, Danielle A. Braje, and Jennifer M. Schloss</dc:creator>
    <dc:date>2026-08-19T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/7n7l-k65c</dc:identifier>
    <prism:doi>10.1103/7n7l-k65c</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-19T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/a8071A35Ce415502156e9808bdebe1a36ef699059</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/9e076A7bCe513f03d5168d9772916b77347942c27">
    <title>&lt;span&gt;Artificial neural network–oscillatory neural network hybrid system using domain-wall synapse devices and nanoconstriction spin Hall nano-oscillators&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/9e076A7bCe513f03d5168d9772916b77347942c27</link>
    <description>Author(s): Raman Hissariya, Gajjala Venkata Sreekar Reddy, Ashwin Tulapurkar, and Debanjan Bhowmik&lt;br/&gt;&lt;span&gt;A coupled spintronic oscillator array has been considered attractive for neuromorphic computing applications. Experimental reports have shown the nano-constriction geometry to be a relatively easier-to-fabricate platform for implementing such spin oscillators, but most prior reports on training and …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Wed Aug 19, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Raman Hissariya, Gajjala Venkata Sreekar Reddy, Ashwin Tulapurkar, and Debanjan Bhowmik</p><span>A coupled spintronic oscillator array has been considered attractive for neuromorphic computing applications. Experimental reports have shown the nano-constriction geometry to be a relatively easier-to-fabricate platform for implementing such spin oscillators, but most prior reports on training and …</span><br/><p>[Phys. Rev. Applied] Published Wed Aug 19, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Artificial neural network–oscillatory neural network hybrid system using domain-wall synapse devices and nanoconstriction spin Hall nano-oscillators&lt;/span&gt;</dc:title>
    <dc:creator>Raman Hissariya, Gajjala Venkata Sreekar Reddy, Ashwin Tulapurkar, and Debanjan Bhowmik</dc:creator>
    <dc:date>2026-08-19T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/6958-v2np</dc:identifier>
    <prism:doi>10.1103/6958-v2np</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-19T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/9e076A7bCe513f03d5168d9772916b77347942c27</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/5a072A94Ccd1b20316c809102d1b4bbab34905ea9">
    <title>&lt;span&gt;Analytical modeling of atomic free-induction-decay dynamics for near-zero-field vector magnetometry&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/5a072A94Ccd1b20316c809102d1b4bbab34905ea9</link>
    <description>Author(s): Yaoguo Wang, Di Zhan, Jixi Lu, Ping Xu, Zhuo Wang, Yanan Gao, Bowen Sun, Danyue Ma, Xiujie Fang, and Jiancheng Fang&lt;br/&gt;&lt;span&gt;Near-zero field magnetometers, particularly the spin-exchange relaxation-free (SERF) magnetometer, despite its exceptional sensitivity, faces a fundamental limitation: its accuracy is inherently tied to the precision of pre-calibrated magnetic coils, creating a circular dependency in calibration. To…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Wed Aug 19, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Yaoguo Wang, Di Zhan, Jixi Lu, Ping Xu, Zhuo Wang, Yanan Gao, Bowen Sun, Danyue Ma, Xiujie Fang, and Jiancheng Fang</p><span>Near-zero field magnetometers, particularly the spin-exchange relaxation-free (SERF) magnetometer, despite its exceptional sensitivity, faces a fundamental limitation: its accuracy is inherently tied to the precision of pre-calibrated magnetic coils, creating a circular dependency in calibration. To…</span><br/><p>[Phys. Rev. Applied] Published Wed Aug 19, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Analytical modeling of atomic free-induction-decay dynamics for near-zero-field vector magnetometry&lt;/span&gt;</dc:title>
    <dc:creator>Yaoguo Wang, Di Zhan, Jixi Lu, Ping Xu, Zhuo Wang, Yanan Gao, Bowen Sun, Danyue Ma, Xiujie Fang, and Jiancheng Fang</dc:creator>
    <dc:date>2026-08-19T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/86l8-qvdm</dc:identifier>
    <prism:doi>10.1103/86l8-qvdm</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-19T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/5a072A94Ccd1b20316c809102d1b4bbab34905ea9</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/5b077D7fC0f1db05a18895c4a5f5883cfd372c4d5">
    <title>&lt;span&gt;High-quality single photons from cavity-enhanced biexciton-to-exciton transition&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/5b077D7fC0f1db05a18895c4a5f5883cfd372c4d5</link>
    <description>Author(s): Nils Heinisch, Francesco Salusti, Mark R. Hogg, Timon L. Baltisberger, Malwina A. Marczak, Sascha R. Valentin, Arne Ludwig, Klaus D. Jöns, Richard J. Warburton, and Stefan Schumacher&lt;br/&gt;&lt;span&gt;Resonant laser excitation of a two-level system with subsequent single-photon emission can be used to generate single photons with high indistinguishability or Hong-Ou-Mandel (HOM) visibility. However, spectral overlap between excitation laser and emitted photons generally poses significant challeng…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Tue Aug 18, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Nils Heinisch, Francesco Salusti, Mark R. Hogg, Timon L. Baltisberger, Malwina A. Marczak, Sascha R. Valentin, Arne Ludwig, Klaus D. Jöns, Richard J. Warburton, and Stefan Schumacher</p><span>Resonant laser excitation of a two-level system with subsequent single-photon emission can be used to generate single photons with high indistinguishability or Hong-Ou-Mandel (HOM) visibility. However, spectral overlap between excitation laser and emitted photons generally poses significant challeng…</span><br/><p>[Phys. Rev. Applied] Published Tue Aug 18, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;High-quality single photons from cavity-enhanced biexciton-to-exciton transition&lt;/span&gt;</dc:title>
    <dc:creator>Nils Heinisch, Francesco Salusti, Mark R. Hogg, Timon L. Baltisberger, Malwina A. Marczak, Sascha R. Valentin, Arne Ludwig, Klaus D. Jöns, Richard J. Warburton, and Stefan Schumacher</dc:creator>
    <dc:date>2026-08-18T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/78c9-j817</dc:identifier>
    <prism:doi>10.1103/78c9-j817</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-18T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/5b077D7fC0f1db05a18895c4a5f5883cfd372c4d5</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/f2077A30Ed41480e55843138a3af6fe00169ccb1c">
    <title>&lt;span&gt;Four-dimensional imaging using a one-dimensional transducer array combining photoacoustic signals with ultrasonic timecoding&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/f2077A30Ed41480e55843138a3af6fe00169ccb1c</link>
    <description>Author(s): Yingjie Feng, Simin Wang, Yang Liu, Qiuqin Mao, Tianxiang Zuo, Yifan Yang, Chao Tao, and Xiaojun Liu&lt;br/&gt;&lt;span&gt;Photoacoustic imaging (PAI) enables high optical contrast at ultrasonic imaging depths, however, real-time volumetric imaging remains challenging due to the complexity of two-dimensional arrays or the slow mechanical scanning of one-dimensional array. In this study, we propose a strategy for scan-fr…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Yingjie Feng, Simin Wang, Yang Liu, Qiuqin Mao, Tianxiang Zuo, Yifan Yang, Chao Tao, and Xiaojun Liu</p><span>Photoacoustic imaging (PAI) enables high optical contrast at ultrasonic imaging depths, however, real-time volumetric imaging remains challenging due to the complexity of two-dimensional arrays or the slow mechanical scanning of one-dimensional array. In this study, we propose a strategy for scan-fr…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Four-dimensional imaging using a one-dimensional transducer array combining photoacoustic signals with ultrasonic timecoding&lt;/span&gt;</dc:title>
    <dc:creator>Yingjie Feng, Simin Wang, Yang Liu, Qiuqin Mao, Tianxiang Zuo, Yifan Yang, Chao Tao, and Xiaojun Liu</dc:creator>
    <dc:date>2026-08-17T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/tkjq-xb7z</dc:identifier>
    <prism:doi>10.1103/tkjq-xb7z</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/f2077A30Ed41480e55843138a3af6fe00169ccb1c</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/bc077AadD5211a07b68039230d6f172365e3b7cce">
    <title>&lt;span&gt;Generation of perfect spatiotemporal acoustic vortices&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/bc077AadD5211a07b68039230d6f172365e3b7cce</link>
    <description>Author(s): Shuai Liu, Feng-Zhuang Liu, Hao Ge, Ming-Hui Lu, and Yan-Feng Chen&lt;br/&gt;&lt;span&gt;Spatiotemporal (ST) vortices carrying transverse orbital angular momentum have attracted growing interest in both optics and acoustics. However, despite diverse generation schemes, a fundamental limitation persists: the vortex radius increases with the topological charge, leading to size mismatch th…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Shuai Liu, Feng-Zhuang Liu, Hao Ge, Ming-Hui Lu, and Yan-Feng Chen</p><span>Spatiotemporal (ST) vortices carrying transverse orbital angular momentum have attracted growing interest in both optics and acoustics. However, despite diverse generation schemes, a fundamental limitation persists: the vortex radius increases with the topological charge, leading to size mismatch th…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Generation of perfect spatiotemporal acoustic vortices&lt;/span&gt;</dc:title>
    <dc:creator>Shuai Liu, Feng-Zhuang Liu, Hao Ge, Ming-Hui Lu, and Yan-Feng Chen</dc:creator>
    <dc:date>2026-08-17T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/4q3d-fgd3</dc:identifier>
    <prism:doi>10.1103/4q3d-fgd3</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/bc077AadD5211a07b68039230d6f172365e3b7cce</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/14079A81Ceb17a08a53529d7bf56c10eaef01d66e">
    <title>&lt;span&gt;&lt;em&gt;In situ&lt;/em&gt; nondestructive phase-boundary resolution in metallic materials&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/14079A81Ceb17a08a53529d7bf56c10eaef01d66e</link>
    <description>Author(s): Jiachen Zhang, Takamasa Hirai, Pukun Tan, Ryo Iguchi, Fuhua Zhang, Xianzhe Chen, Cheng Song, Zhiyang Wei, Dazhi Hou, and Ken-ichi Uchida&lt;br/&gt;&lt;span&gt;Phase boundary, the interface between neighboring physical phases in matter, hosts various emergent novel phenomena and has been a pivotal subject of research interest for decades. Conventional techniques for the spatial resolving of phase boundaries rely on the interaction between the sample and ce…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Jiachen Zhang, Takamasa Hirai, Pukun Tan, Ryo Iguchi, Fuhua Zhang, Xianzhe Chen, Cheng Song, Zhiyang Wei, Dazhi Hou, and Ken-ichi Uchida</p><span>Phase boundary, the interface between neighboring physical phases in matter, hosts various emergent novel phenomena and has been a pivotal subject of research interest for decades. Conventional techniques for the spatial resolving of phase boundaries rely on the interaction between the sample and ce…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;&lt;em&gt;In situ&lt;/em&gt; nondestructive phase-boundary resolution in metallic materials&lt;/span&gt;</dc:title>
    <dc:creator>Jiachen Zhang, Takamasa Hirai, Pukun Tan, Ryo Iguchi, Fuhua Zhang, Xianzhe Chen, Cheng Song, Zhiyang Wei, Dazhi Hou, and Ken-ichi Uchida</dc:creator>
    <dc:date>2026-08-17T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/qf6k-jkm2</dc:identifier>
    <prism:doi>10.1103/qf6k-jkm2</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/14079A81Ceb17a08a53529d7bf56c10eaef01d66e</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/7a079AffY8b17406d53408614e9fa7f9a02524c43">
    <title>&lt;span&gt;Designing Willis metamaterials with desired deformation pathways via incremental contrastive learning&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/7a079AffY8b17406d53408614e9fa7f9a02524c43</link>
    <description>Author(s): Li Huang, Yuxuan Tang, and Yangyang Chen&lt;br/&gt;&lt;span&gt;Precise control over deformation behaviors is essential for shape-morphing devices, adaptive actuators, and soft robotics. However, designing materials to achieve the whole user-defined deformation pathway remains a significant challenge. This work introduces a fast, physics-informed approach, namel…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Li Huang, Yuxuan Tang, and Yangyang Chen</p><span>Precise control over deformation behaviors is essential for shape-morphing devices, adaptive actuators, and soft robotics. However, designing materials to achieve the whole user-defined deformation pathway remains a significant challenge. This work introduces a fast, physics-informed approach, namel…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Designing Willis metamaterials with desired deformation pathways via incremental contrastive learning&lt;/span&gt;</dc:title>
    <dc:creator>Li Huang, Yuxuan Tang, and Yangyang Chen</dc:creator>
    <dc:date>2026-08-17T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/q1w2-xggg</dc:identifier>
    <prism:doi>10.1103/q1w2-xggg</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/7a079AffY8b17406d53408614e9fa7f9a02524c43</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/3207dAa4C691270fa5009d21363663b2a3427f91f">
    <title>&lt;span&gt;Phonon decoherence produced by two-level tunneling states&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/3207dAa4C691270fa5009d21363663b2a3427f91f</link>
    <description>Author(s): Ryan O. Behunin, Taylor Ray, Dylan Chapman, Andrew J. Shepherd, Yizhi Luo, and Peter T. Rakich&lt;br/&gt;&lt;span&gt;Phonon modes within pristine crystalline resonators now routinely reach the quantum ground state. Such systems are attractive for quantum information science applications, as advanced fabrication and processing can enable relatively long quantum coherence times, and precision control can be realized…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Ryan O. Behunin, Taylor Ray, Dylan Chapman, Andrew J. Shepherd, Yizhi Luo, and Peter T. Rakich</p><span>Phonon modes within pristine crystalline resonators now routinely reach the quantum ground state. Such systems are attractive for quantum information science applications, as advanced fabrication and processing can enable relatively long quantum coherence times, and precision control can be realized…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Phonon decoherence produced by two-level tunneling states&lt;/span&gt;</dc:title>
    <dc:creator>Ryan O. Behunin, Taylor Ray, Dylan Chapman, Andrew J. Shepherd, Yizhi Luo, and Peter T. Rakich</dc:creator>
    <dc:date>2026-08-17T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/732t-38bj</dc:identifier>
    <prism:doi>10.1103/732t-38bj</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/3207dAa4C691270fa5009d21363663b2a3427f91f</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/a7073A7fD701cb00769b1ac23f113c9efc3896f51">
    <title>&lt;span&gt;Noise-resilient phase detection enabled via nonlinear non-Hermitian electronics&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/a7073A7fD701cb00769b1ac23f113c9efc3896f51</link>
    <description>Author(s): Yan-qiang Ma, An Chen, Yi-fei Xia, Jing Yang, Bin Liang, and Jian-chun Cheng&lt;br/&gt;&lt;span&gt;Maintaining phase consistency under noisy conditions is a key issue in high-fidelity signal transmission. Traditional single-threshold phase detection methods rely on history-independent polarity discrimination, rendering them prone to waveform distortion. Non-Hermitian systems, although promising f…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Yan-qiang Ma, An Chen, Yi-fei Xia, Jing Yang, Bin Liang, and Jian-chun Cheng</p><span>Maintaining phase consistency under noisy conditions is a key issue in high-fidelity signal transmission. Traditional single-threshold phase detection methods rely on history-independent polarity discrimination, rendering them prone to waveform distortion. Non-Hermitian systems, although promising f…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Noise-resilient phase detection enabled via nonlinear non-Hermitian electronics&lt;/span&gt;</dc:title>
    <dc:creator>Yan-qiang Ma, An Chen, Yi-fei Xia, Jing Yang, Bin Liang, and Jian-chun Cheng</dc:creator>
    <dc:date>2026-08-17T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/d65d-z83w</dc:identifier>
    <prism:doi>10.1103/d65d-z83w</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/a7073A7fD701cb00769b1ac23f113c9efc3896f51</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/7307bA97D1819d00e51c73f3de5f9c7da216a7ce5">
    <title>&lt;span&gt;Multifunctional VN${}_{2}$B${}_{2}$S${}_{2}$ monolayer: A promising two-dimensional material for spintronic and optoelectronic applications&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/7307bA97D1819d00e51c73f3de5f9c7da216a7ce5</link>
    <description>Author(s): Xiaozheng Fan, Mehrdad Shiri, Jiajun Li, Tengda Fan, Junshuai Wang, Shuaikang Zhang, Kun Wang, Chunlan Ma, Shijing Gong, Chuanxi Zhao, and Yipeng An&lt;br/&gt;&lt;span&gt;Recently, the MA2Z4 family has become a key focus in condensed matter physics and materials science due to its unique structure and tunable electronic properties. This study systematically investigates the crystal structure, electronic structure, magnetism, mechanical properties, and the potential a…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Xiaozheng Fan, Mehrdad Shiri, Jiajun Li, Tengda Fan, Junshuai Wang, Shuaikang Zhang, Kun Wang, Chunlan Ma, Shijing Gong, Chuanxi Zhao, and Yipeng An</p><span>Recently, the MA2Z4 family has become a key focus in condensed matter physics and materials science due to its unique structure and tunable electronic properties. This study systematically investigates the crystal structure, electronic structure, magnetism, mechanical properties, and the potential a…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Multifunctional VN${}_{2}$B${}_{2}$S${}_{2}$ monolayer: A promising two-dimensional material for spintronic and optoelectronic applications&lt;/span&gt;</dc:title>
    <dc:creator>Xiaozheng Fan, Mehrdad Shiri, Jiajun Li, Tengda Fan, Junshuai Wang, Shuaikang Zhang, Kun Wang, Chunlan Ma, Shijing Gong, Chuanxi Zhao, and Yipeng An</dc:creator>
    <dc:date>2026-08-17T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/89np-kn9b</dc:identifier>
    <prism:doi>10.1103/89np-kn9b</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/7307bA97D1819d00e51c73f3de5f9c7da216a7ce5</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/c507cA5cEe11300796f1522568849702a35371d85">
    <title>&lt;span&gt;Engineered broadband Purcell protection using a shared $Π$ filter for multiplexed superconducting qubits&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/c507cA5cEe11300796f1522568849702a35371d85</link>
    <description>Author(s): Samuel D. Escribano, Yael Kriheli, Samuel Goldstein, Daniel Dahan, and Nadav Katz&lt;br/&gt;&lt;span&gt;We propose a broadband Purcell-protection scheme based on a single shared filter integrated directly into the feedline, enabling simultaneous protection of multiple qubits in a compact architecture with minimal hardware overhead. The filter consists of two open-ended stubs connected by an in-line tr…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Samuel D. Escribano, Yael Kriheli, Samuel Goldstein, Daniel Dahan, and Nadav Katz</p><span>We propose a broadband Purcell-protection scheme based on a single shared filter integrated directly into the feedline, enabling simultaneous protection of multiple qubits in a compact architecture with minimal hardware overhead. The filter consists of two open-ended stubs connected by an in-line tr…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Engineered broadband Purcell protection using a shared $Π$ filter for multiplexed superconducting qubits&lt;/span&gt;</dc:title>
    <dc:creator>Samuel D. Escribano, Yael Kriheli, Samuel Goldstein, Daniel Dahan, and Nadav Katz</dc:creator>
    <dc:date>2026-08-17T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/nf7j-841f</dc:identifier>
    <prism:doi>10.1103/nf7j-841f</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/c507cA5cEe11300796f1522568849702a35371d85</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/ec07bA6fA661ce0a25fb92c06f795484250f1113e">
    <title>&lt;span&gt;Nonideal absorbers in hot-carrier and hot-absorber solar cells: Losses and heat recycling&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/ec07bA6fA661ce0a25fb92c06f795484250f1113e</link>
    <description>Author(s): Inés Durán, Simon Svatek, Irene Artacho, Elisa Antolín, and Antonio Martí&lt;br/&gt;&lt;span&gt;The hot carrier solar cell exhibits a photovoltaic conversion efficiency limit of 85.4%. Among the idealizations necessary to achieve this efficiency, it has traditionally been considered essential that the electrons absorbing sunlight do not end up transferring the captured energy to the crystal la…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Inés Durán, Simon Svatek, Irene Artacho, Elisa Antolín, and Antonio Martí</p><span>The hot carrier solar cell exhibits a photovoltaic conversion efficiency limit of 85.4%. Among the idealizations necessary to achieve this efficiency, it has traditionally been considered essential that the electrons absorbing sunlight do not end up transferring the captured energy to the crystal la…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Nonideal absorbers in hot-carrier and hot-absorber solar cells: Losses and heat recycling&lt;/span&gt;</dc:title>
    <dc:creator>Inés Durán, Simon Svatek, Irene Artacho, Elisa Antolín, and Antonio Martí</dc:creator>
    <dc:date>2026-08-17T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/7gjt-qhd4</dc:identifier>
    <prism:doi>10.1103/7gjt-qhd4</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/ec07bA6fA661ce0a25fb92c06f795484250f1113e</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/7d079A49C4f18e04b5e72ee94a4773f44b6ff1691">
    <title>&lt;span&gt;Chip-scale terahertz distributed-feedback Cherenkov laser in a silicon grating&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/7d079A49C4f18e04b5e72ee94a4773f44b6ff1691</link>
    <description>Author(s): Hossein Shirvani and Yen-Chieh Huang&lt;br/&gt;&lt;span&gt;We report a distributed-feedback behavior in electron-driven dielectric gratings, arising from intrinsic forward– backward wave interactions, relevant to low-threshold coherent emission. Coupled-mode analysis reveals a quasistable region in the groove-depth dependence of the distributed-feedback cou…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Hossein Shirvani and Yen-Chieh Huang</p><span>We report a distributed-feedback behavior in electron-driven dielectric gratings, arising from intrinsic forward– backward wave interactions, relevant to low-threshold coherent emission. Coupled-mode analysis reveals a quasistable region in the groove-depth dependence of the distributed-feedback cou…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Chip-scale terahertz distributed-feedback Cherenkov laser in a silicon grating&lt;/span&gt;</dc:title>
    <dc:creator>Hossein Shirvani and Yen-Chieh Huang</dc:creator>
    <dc:date>2026-08-17T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/135n-fstn</dc:identifier>
    <prism:doi>10.1103/135n-fstn</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/7d079A49C4f18e04b5e72ee94a4773f44b6ff1691</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/58078A3aZf41b900e54a53224f8283498c3008ed9">
    <title>&lt;span&gt;Transverse relaxation time–aware qubit-mapping algorithm for noisy intermediate-scale quantum devices&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/58078A3aZf41b900e54a53224f8283498c3008ed9</link>
    <description>Author(s): Yifei Huang, Pascal Jahan Elahi, Ugo Varetto, Kan He, Jinchuan Hou, and Shusen Liu&lt;br/&gt;&lt;span&gt;Noisy intermediate-scale quantum (NISQ) devices impose dual challenges on quantum circuit execution: limited qubit connectivity requires extensive SWAP-gate routing, while time-dependent decoherence progressively degrades quantum information. Existing qubit mapping algorithms optimize for hardware t…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Yifei Huang, Pascal Jahan Elahi, Ugo Varetto, Kan He, Jinchuan Hou, and Shusen Liu</p><span>Noisy intermediate-scale quantum (NISQ) devices impose dual challenges on quantum circuit execution: limited qubit connectivity requires extensive SWAP-gate routing, while time-dependent decoherence progressively degrades quantum information. Existing qubit mapping algorithms optimize for hardware t…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Transverse relaxation time–aware qubit-mapping algorithm for noisy intermediate-scale quantum devices&lt;/span&gt;</dc:title>
    <dc:creator>Yifei Huang, Pascal Jahan Elahi, Ugo Varetto, Kan He, Jinchuan Hou, and Shusen Liu</dc:creator>
    <dc:date>2026-08-17T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/1hwv-bmqs</dc:identifier>
    <prism:doi>10.1103/1hwv-bmqs</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/58078A3aZf41b900e54a53224f8283498c3008ed9</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/0b07dA77D3b1ce0626799db9a5d7684cb2b78be39">
    <title>&lt;span&gt;Dynamically tunable Fano sensor based on diode-reconfigurable spoof surface plasmons&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/0b07dA77D3b1ce0626799db9a5d7684cb2b78be39</link>
    <description>Author(s): Dongchao Zou, Kai-Da Xu, Ke Zhang, Junlong Li, Jintao Lai, Yuanmei Xu, and Xue-Shi Li&lt;br/&gt;&lt;span&gt;A dynamically tunable Fano resonance sensor based on PIN-diode-reconfigurable resonators is proposed to achieve multi-state frequency tuning while maintaining high sensitivity in a microwave spoof surface plasmon polariton (SSPP) platform. The sensor comprises a fishbone-shaped resonator coupled wit…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Dongchao Zou, Kai-Da Xu, Ke Zhang, Junlong Li, Jintao Lai, Yuanmei Xu, and Xue-Shi Li</p><span>A dynamically tunable Fano resonance sensor based on PIN-diode-reconfigurable resonators is proposed to achieve multi-state frequency tuning while maintaining high sensitivity in a microwave spoof surface plasmon polariton (SSPP) platform. The sensor comprises a fishbone-shaped resonator coupled wit…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Dynamically tunable Fano sensor based on diode-reconfigurable spoof surface plasmons&lt;/span&gt;</dc:title>
    <dc:creator>Dongchao Zou, Kai-Da Xu, Ke Zhang, Junlong Li, Jintao Lai, Yuanmei Xu, and Xue-Shi Li</dc:creator>
    <dc:date>2026-08-17T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/gx27-jlp4</dc:identifier>
    <prism:doi>10.1103/gx27-jlp4</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/0b07dA77D3b1ce0626799db9a5d7684cb2b78be39</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/3f078AccD2f1f20106625e34e2f5827679c8a3a56">
    <title>&lt;span&gt;Reconfigurable circuit for mode-tunable topological quantum structured light&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/3f078AccD2f1f20106625e34e2f5827679c8a3a56</link>
    <description>Author(s): Pedro Ornelas, Tatjana Kleine, André G. de Oliveira, Carmelo Rosales-Guzmán, Andrew Forbes, and Isaac Nape&lt;br/&gt;&lt;span&gt;Structured light in the quantum regime has garnered considerable attention due to the opportunities it offers when mixing light’s internal degrees of freedom, for high-dimensional and multi-dimensional quantum states of light. A popular example is to harness polarisation and spatial entangled photon…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Pedro Ornelas, Tatjana Kleine, André G. de Oliveira, Carmelo Rosales-Guzmán, Andrew Forbes, and Isaac Nape</p><span>Structured light in the quantum regime has garnered considerable attention due to the opportunities it offers when mixing light’s internal degrees of freedom, for high-dimensional and multi-dimensional quantum states of light. A popular example is to harness polarisation and spatial entangled photon…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Reconfigurable circuit for mode-tunable topological quantum structured light&lt;/span&gt;</dc:title>
    <dc:creator>Pedro Ornelas, Tatjana Kleine, André G. de Oliveira, Carmelo Rosales-Guzmán, Andrew Forbes, and Isaac Nape</dc:creator>
    <dc:date>2026-08-17T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/w3dc-58pw</dc:identifier>
    <prism:doi>10.1103/w3dc-58pw</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/3f078AccD2f1f20106625e34e2f5827679c8a3a56</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/b7072Dd5D851cc0242c7560251f68a03d952fdb1c">
    <title>&lt;span&gt;Monolithic segmented three-dimensional ion trap for quantum technology applications&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/b7072Dd5D851cc0242c7560251f68a03d952fdb1c</link>
    <description>Author(s): Abhishek Menon, Michael Straus, George Tomaras, Liam Jeanette, April X. Sheffield, Devon Valdez, Yuanheng Xie, Visal So, De Luo, Midhuna Duraisamy Suganthi, Mark Dugan, Philippe Bado, Norbert M. Linke, Guido Pagano, and Roman Zhuravel&lt;br/&gt;&lt;span&gt;Monolithic three-dimensional (3D) Paul traps combine the high-precision microfabrication of two-dimensional (2D) chip traps with the deep trapping potentials and low heating rates characteristic of macroscopic 3D Paul traps, which are typically machined by traditional means and mechanically assemble…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Abhishek Menon, Michael Straus, George Tomaras, Liam Jeanette, April X. Sheffield, Devon Valdez, Yuanheng Xie, Visal So, De Luo, Midhuna Duraisamy Suganthi, Mark Dugan, Philippe Bado, Norbert M. Linke, Guido Pagano, and Roman Zhuravel</p><span>Monolithic three-dimensional (3D) Paul traps combine the high-precision microfabrication of two-dimensional (2D) chip traps with the deep trapping potentials and low heating rates characteristic of macroscopic 3D Paul traps, which are typically machined by traditional means and mechanically assemble…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Monolithic segmented three-dimensional ion trap for quantum technology applications&lt;/span&gt;</dc:title>
    <dc:creator>Abhishek Menon, Michael Straus, George Tomaras, Liam Jeanette, April X. Sheffield, Devon Valdez, Yuanheng Xie, Visal So, De Luo, Midhuna Duraisamy Suganthi, Mark Dugan, Philippe Bado, Norbert M. Linke, Guido Pagano, and Roman Zhuravel</dc:creator>
    <dc:date>2026-08-17T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/srq8-cgnt</dc:identifier>
    <prism:doi>10.1103/srq8-cgnt</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/b7072Dd5D851cc0242c7560251f68a03d952fdb1c</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/99072A41F2213d0256661528780373e876338b949">
    <title>&lt;span&gt;Octahedral-field-informed machine learning for accelerated discovery of two-dimensional magnets with perpendicular magnetic anisotropy&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/99072A41F2213d0256661528780373e876338b949</link>
    <description>Author(s): Yanyan Yang, Xinyu Chen, Qian Xia, Qionghua Zhou, Qian Chen, and Jinlan Wang&lt;br/&gt;&lt;span&gt;Magnetic anisotropy is a fundamental prerequisite for stabilizing long-range order in two-dimensional (2D) magnets, yet its evaluation via first-principles methods is computationally prohibitive for large-scale material discovery. Here, an octahedral-field-informed machine learning framework is repo…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Yanyan Yang, Xinyu Chen, Qian Xia, Qionghua Zhou, Qian Chen, and Jinlan Wang</p><span>Magnetic anisotropy is a fundamental prerequisite for stabilizing long-range order in two-dimensional (2D) magnets, yet its evaluation via first-principles methods is computationally prohibitive for large-scale material discovery. Here, an octahedral-field-informed machine learning framework is repo…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Octahedral-field-informed machine learning for accelerated discovery of two-dimensional magnets with perpendicular magnetic anisotropy&lt;/span&gt;</dc:title>
    <dc:creator>Yanyan Yang, Xinyu Chen, Qian Xia, Qionghua Zhou, Qian Chen, and Jinlan Wang</dc:creator>
    <dc:date>2026-08-17T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/tx71-z9x1</dc:identifier>
    <prism:doi>10.1103/tx71-z9x1</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/99072A41F2213d0256661528780373e876338b949</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/27075A91D221f006e563540838387639d3739f7cd">
    <title>&lt;span&gt;Simultaneous detection, demodulation, and angle-of-arrival determination of communication signals using a dual-ladder Rydberg receiver&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/27075A91D221f006e563540838387639d3739f7cd</link>
    <description>Author(s): Stone B. Oliver, Samuel Berweger, Eugeniy E. Mikhailov, Dixith Manchaiah, Nikunjkumar Prajapati, Christopher L. Holloway, and Matthew T. Simons&lt;br/&gt;&lt;span&gt;In a typical Rydberg mixer, modulated communication signals are detected using a radio frequency (RF) heterodyne technique. The mixer outputs an intermediate frequency (IF) which must be filtered and mixed down to baseband. In this work, we apply an RF-homodyne technique to simultaneously demonstrat…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Fri Aug 14, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Stone B. Oliver, Samuel Berweger, Eugeniy E. Mikhailov, Dixith Manchaiah, Nikunjkumar Prajapati, Christopher L. Holloway, and Matthew T. Simons</p><span>In a typical Rydberg mixer, modulated communication signals are detected using a radio frequency (RF) heterodyne technique. The mixer outputs an intermediate frequency (IF) which must be filtered and mixed down to baseband. In this work, we apply an RF-homodyne technique to simultaneously demonstrat…</span><br/><p>[Phys. Rev. Applied] Published Fri Aug 14, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Simultaneous detection, demodulation, and angle-of-arrival determination of communication signals using a dual-ladder Rydberg receiver&lt;/span&gt;</dc:title>
    <dc:creator>Stone B. Oliver, Samuel Berweger, Eugeniy E. Mikhailov, Dixith Manchaiah, Nikunjkumar Prajapati, Christopher L. Holloway, and Matthew T. Simons</dc:creator>
    <dc:date>2026-08-14T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/nvd9-9zs1</dc:identifier>
    <prism:doi>10.1103/nvd9-9zs1</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-14T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/27075A91D221f006e563540838387639d3739f7cd</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/56070AabDfd1ca0ce7d20219ad5eb97f71ba7382e">
    <title>&lt;span&gt;Carbon nanowalls integrated on silicon nitride waveguide for photothermoelectric near-infrared detection&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/56070AabDfd1ca0ce7d20219ad5eb97f71ba7382e</link>
    <description>Author(s): Alexandr M. Mumlyakov, Nikita Yu. Dmitriev, Maksim V. Shibalov, Ivan A. Filippov, Igor V. Trofimov, Alexandr S. Rykov, Nikolay V. Porokhov, Sergey A. Sokolov, Maksim S. Bitkov, Galina V. Molodtsova, Egor V. Kungurtsev, Igor A. Bilenko, and Michael A. Tarkhov&lt;br/&gt;&lt;span&gt;This paper presents a technology for fabricating microstructures based on carbon nanowalls (CNWs) integrated on silicon nitride (SiNx) waveguides. The step-by-step fabrication process is described, including chemical mechanical planarization, deposition of molybdenum contacts, selective etching of t…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Thu Aug 13, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Alexandr M. Mumlyakov, Nikita Yu. Dmitriev, Maksim V. Shibalov, Ivan A. Filippov, Igor V. Trofimov, Alexandr S. Rykov, Nikolay V. Porokhov, Sergey A. Sokolov, Maksim S. Bitkov, Galina V. Molodtsova, Egor V. Kungurtsev, Igor A. Bilenko, and Michael A. Tarkhov</p><span>This paper presents a technology for fabricating microstructures based on carbon nanowalls (CNWs) integrated on silicon nitride (SiNx) waveguides. The step-by-step fabrication process is described, including chemical mechanical planarization, deposition of molybdenum contacts, selective etching of t…</span><br/><p>[Phys. Rev. Applied] Published Thu Aug 13, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Carbon nanowalls integrated on silicon nitride waveguide for photothermoelectric near-infrared detection&lt;/span&gt;</dc:title>
    <dc:creator>Alexandr M. Mumlyakov, Nikita Yu. Dmitriev, Maksim V. Shibalov, Ivan A. Filippov, Igor V. Trofimov, Alexandr S. Rykov, Nikolay V. Porokhov, Sergey A. Sokolov, Maksim S. Bitkov, Galina V. Molodtsova, Egor V. Kungurtsev, Igor A. Bilenko, and Michael A. Tarkhov</dc:creator>
    <dc:date>2026-08-13T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/prk9-c4r6</dc:identifier>
    <prism:doi>10.1103/prk9-c4r6</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-13T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/56070AabDfd1ca0ce7d20219ad5eb97f71ba7382e</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/e0070D9cAc31380de17c4266cdad1a39ec0726280">
    <title>&lt;span&gt;Superconducting-qubit decoherence correlated with detected radiation events&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/e0070D9cAc31380de17c4266cdad1a39ec0726280</link>
    <description>Author(s): Alessandro R. Castelli, Kristin M. Beck, Loren D. H. Alegria, Luis A. Martinez, Kevin R. Chaves, Sean R. O’Kelley, Nicholas Materise, Jonathan L. Dubois, and Yaniv J. Rosen&lt;br/&gt;&lt;span&gt;Most quantum error correction (QEC) protocols for superconducting qubits assume spatially and temporally uncorrelated decoherence events; however, recent evidence suggests that cosmic radiation induces spatially correlated errors. We present a platform that sandwiches a superconducting transmon qubi…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Thu Aug 13, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Alessandro R. Castelli, Kristin M. Beck, Loren D. H. Alegria, Luis A. Martinez, Kevin R. Chaves, Sean R. O’Kelley, Nicholas Materise, Jonathan L. Dubois, and Yaniv J. Rosen</p><span>Most quantum error correction (QEC) protocols for superconducting qubits assume spatially and temporally uncorrelated decoherence events; however, recent evidence suggests that cosmic radiation induces spatially correlated errors. We present a platform that sandwiches a superconducting transmon qubi…</span><br/><p>[Phys. Rev. Applied] Published Thu Aug 13, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Superconducting-qubit decoherence correlated with detected radiation events&lt;/span&gt;</dc:title>
    <dc:creator>Alessandro R. Castelli, Kristin M. Beck, Loren D. H. Alegria, Luis A. Martinez, Kevin R. Chaves, Sean R. O’Kelley, Nicholas Materise, Jonathan L. Dubois, and Yaniv J. Rosen</dc:creator>
    <dc:date>2026-08-13T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/ddyy-t37l</dc:identifier>
    <prism:doi>10.1103/ddyy-t37l</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-13T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/e0070D9cAc31380de17c4266cdad1a39ec0726280</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/f507dK5cYf81fd05890c51c08378ede26704eb4a4">
    <title>&lt;span&gt;Frequency collisions in parametrically modulated superconducting circuits&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/f507dK5cYf81fd05890c51c08378ede26704eb4a4</link>
    <description>Author(s): Zhuang Ma, Peng Zhao, Xinsheng Tan, and Yang Yu&lt;br/&gt;&lt;span&gt;Superconducting circuits are a leading platform for scalable quantum computing, where parametric modulation is a widely used technique for implementing high-fidelity multi-qubit operations. A critical challenge, however, is that this modulation can induce a dense landscape of parasitic couplings, le…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Wed Aug 12, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Zhuang Ma, Peng Zhao, Xinsheng Tan, and Yang Yu</p><span>Superconducting circuits are a leading platform for scalable quantum computing, where parametric modulation is a widely used technique for implementing high-fidelity multi-qubit operations. A critical challenge, however, is that this modulation can induce a dense landscape of parasitic couplings, le…</span><br/><p>[Phys. Rev. Applied] Published Wed Aug 12, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Frequency collisions in parametrically modulated superconducting circuits&lt;/span&gt;</dc:title>
    <dc:creator>Zhuang Ma, Peng Zhao, Xinsheng Tan, and Yang Yu</dc:creator>
    <dc:date>2026-08-12T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/ptj2-kcpc</dc:identifier>
    <prism:doi>10.1103/ptj2-kcpc</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-12T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/f507dK5cYf81fd05890c51c08378ede26704eb4a4</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/41073DfeA8a1650da107673734bf0a5a017bca776">
    <title>&lt;span&gt;Optimization of Si/Si-Ge heterostructures for large and robust valley splitting in silicon qubits&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/41073DfeA8a1650da107673734bf0a5a017bca776</link>
    <description>Author(s): Abel Thayil, Lasse Ermoneit, Lars R. Schreiber, Thomas Koprucki, and Markus Kantner&lt;br/&gt;&lt;span&gt;Small and device-dependent valley splittings remain a key challenge for electron spin qubits in silicon (Si), directly limiting qubit fidelity, device uniformity, and the scalability of Si-based quantum processors. In silicon–germanium (SiGe) heterostructures, this problem can be addressed through e…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Wed Aug 12, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Abel Thayil, Lasse Ermoneit, Lars R. Schreiber, Thomas Koprucki, and Markus Kantner</p><span>Small and device-dependent valley splittings remain a key challenge for electron spin qubits in silicon (Si), directly limiting qubit fidelity, device uniformity, and the scalability of Si-based quantum processors. In silicon–germanium (SiGe) heterostructures, this problem can be addressed through e…</span><br/><p>[Phys. Rev. Applied] Published Wed Aug 12, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Optimization of Si/Si-Ge heterostructures for large and robust valley splitting in silicon qubits&lt;/span&gt;</dc:title>
    <dc:creator>Abel Thayil, Lasse Ermoneit, Lars R. Schreiber, Thomas Koprucki, and Markus Kantner</dc:creator>
    <dc:date>2026-08-12T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/pd5d-sddp</dc:identifier>
    <prism:doi>10.1103/pd5d-sddp</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-12T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/41073DfeA8a1650da107673734bf0a5a017bca776</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/91077Aa6E0219e0ab6552483949897c0e1ad39985">
    <title>&lt;span&gt;Rate-limited nonradiative recombination at a single point defect revealed by time-resolved cathodoluminescence&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/91077Aa6E0219e0ab6552483949897c0e1ad39985</link>
    <description>Author(s): Thomas F. K. Weatherley, Gunnar Kusch, Jean-François Carlin, Raphaël Butté, Rachel A. Oliver, and Nicolas Grandjean&lt;br/&gt;&lt;span&gt;Nonradiative carrier recombination at point defects (PDs) can severely limit the efficiency of semiconductor optoelectronic devices. However, such nonradiative PDs are difficult to study directly because they are atomic-scale, do not emit localized luminescence, and are typically buried deep in a se…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Tue Aug 11, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Thomas F. K. Weatherley, Gunnar Kusch, Jean-François Carlin, Raphaël Butté, Rachel A. Oliver, and Nicolas Grandjean</p><span>Nonradiative carrier recombination at point defects (PDs) can severely limit the efficiency of semiconductor optoelectronic devices. However, such nonradiative PDs are difficult to study directly because they are atomic-scale, do not emit localized luminescence, and are typically buried deep in a se…</span><br/><p>[Phys. Rev. Applied] Published Tue Aug 11, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Rate-limited nonradiative recombination at a single point defect revealed by time-resolved cathodoluminescence&lt;/span&gt;</dc:title>
    <dc:creator>Thomas F. K. Weatherley, Gunnar Kusch, Jean-François Carlin, Raphaël Butté, Rachel A. Oliver, and Nicolas Grandjean</dc:creator>
    <dc:date>2026-08-11T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/j1nk-831l</dc:identifier>
    <prism:doi>10.1103/j1nk-831l</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-11T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/91077Aa6E0219e0ab6552483949897c0e1ad39985</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/6f075AcaYe31cd06d422998667ac0f623682b5c69">
    <title>&lt;span&gt;Dynamic control of orbital angular momentum of light in strong atmospheric turbulence for free-space optical communication.&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/6f075AcaYe31cd06d422998667ac0f623682b5c69</link>
    <description>Author(s): Mulin Yu, Yakun Wang, Yizhou Liu, Lingfei Xu, Yahong Chen, Jiayi Yu, and Fei Wang&lt;br/&gt;&lt;span&gt;Free–space optical communication based on photonic orbital angular momentum (OAM), including OAM multiplexing and OAM modulation schemes, has the potential to greatly increase information transfer capacity. However, the presence of atmospheric turbulence can severely distort the spatial modes of OAM…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 10, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Mulin Yu, Yakun Wang, Yizhou Liu, Lingfei Xu, Yahong Chen, Jiayi Yu, and Fei Wang</p><span>Free–space optical communication based on photonic orbital angular momentum (OAM), including OAM multiplexing and OAM modulation schemes, has the potential to greatly increase information transfer capacity. However, the presence of atmospheric turbulence can severely distort the spatial modes of OAM…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 10, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Dynamic control of orbital angular momentum of light in strong atmospheric turbulence for free-space optical communication.&lt;/span&gt;</dc:title>
    <dc:creator>Mulin Yu, Yakun Wang, Yizhou Liu, Lingfei Xu, Yahong Chen, Jiayi Yu, and Fei Wang</dc:creator>
    <dc:date>2026-08-10T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/yfpj-b8q7</dc:identifier>
    <prism:doi>10.1103/yfpj-b8q7</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-10T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/6f075AcaYe31cd06d422998667ac0f623682b5c69</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/3a075Af6U5f1b70b94e076c43ca8f160f2caff6fc">
    <title>&lt;span&gt;Multislice hollow ptychography for simultaneous atomic-layer-resolved three-dimensional structural imaging and spectroscopy&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/3a075Af6U5f1b70b94e076c43ca8f160f2caff6fc</link>
    <description>Author(s): Yu Lei and Peng Wang&lt;br/&gt;&lt;span&gt;Electron–matter interactions produce elastic and inelastic scattering, forming the basis for imaging and spectroscopy in electron microscopy. However, integrating electron energy-loss spectroscopy (EELS) with 4D-STEM and ptychography remains challenging due to detector geometry conflicts. Hollow pty…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 10, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Yu Lei and Peng Wang</p><span>Electron–matter interactions produce elastic and inelastic scattering, forming the basis for imaging and spectroscopy in electron microscopy. However, integrating electron energy-loss spectroscopy (EELS) with 4D-STEM and ptychography remains challenging due to detector geometry conflicts. Hollow pty…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 10, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Multislice hollow ptychography for simultaneous atomic-layer-resolved three-dimensional structural imaging and spectroscopy&lt;/span&gt;</dc:title>
    <dc:creator>Yu Lei and Peng Wang</dc:creator>
    <dc:date>2026-08-10T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/by27-b9mc</dc:identifier>
    <prism:doi>10.1103/by27-b9mc</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-10T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/3a075Af6U5f1b70b94e076c43ca8f160f2caff6fc</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/fb074Ke6T3b1140ce96c20333e951b1f1331e3806">
    <title>&lt;span&gt;Passive quantum interconnects: Multiplexed remote entanglement generation with cavity-assisted photon scattering&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/fb074Ke6T3b1140ce96c20333e951b1f1331e3806</link>
    <description>Author(s): Seigo Kikura, Kazufumi Tanji, Akihisa Goban, and Shinichi Sunami&lt;br/&gt;&lt;span&gt;We propose a time- and wavelength-multiplexed remote atom-atom entanglement generation protocol based on cavity-assisted photon scattering (CAPS). This is designed to achieve a high rate and high fidelity with robustness to operational imperfections, parameter fluctuations, and auxiliary time costs,…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Aug 10, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Seigo Kikura, Kazufumi Tanji, Akihisa Goban, and Shinichi Sunami</p><span>We propose a time- and wavelength-multiplexed remote atom-atom entanglement generation protocol based on cavity-assisted photon scattering (CAPS). This is designed to achieve a high rate and high fidelity with robustness to operational imperfections, parameter fluctuations, and auxiliary time costs,…</span><br/><p>[Phys. Rev. Applied] Published Mon Aug 10, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Passive quantum interconnects: Multiplexed remote entanglement generation with cavity-assisted photon scattering&lt;/span&gt;</dc:title>
    <dc:creator>Seigo Kikura, Kazufumi Tanji, Akihisa Goban, and Shinichi Sunami</dc:creator>
    <dc:date>2026-08-10T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/32yf-3nsm</dc:identifier>
    <prism:doi>10.1103/32yf-3nsm</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-10T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/fb074Ke6T3b1140ce96c20333e951b1f1331e3806</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/9707fA5aAa6Ec516003285a4ad908a896be5f2d4d">
    <title>&lt;span&gt;Collimated light emission from inelastic electron tunneling enabled by a nonlocal plasmonic metasurface&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/9707fA5aAa6Ec516003285a4ad908a896be5f2d4d</link>
    <description>Author(s): Yu Wu, Dudu Song, Zhengyi Lu, Shunping Zhang, and Hongxing Xu&lt;br/&gt;&lt;span&gt;Light emission via electron tunneling offers ultrafast light generation across the visible and near-infrared spectrum but typically suffers from omnidirectional emission, limiting its practical applications. Shaping plasmonic tunneling junction into a metasurface has been proposed to enhance directi…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Fri Aug 07, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Yu Wu, Dudu Song, Zhengyi Lu, Shunping Zhang, and Hongxing Xu</p><span>Light emission via electron tunneling offers ultrafast light generation across the visible and near-infrared spectrum but typically suffers from omnidirectional emission, limiting its practical applications. Shaping plasmonic tunneling junction into a metasurface has been proposed to enhance directi…</span><br/><p>[Phys. Rev. Applied] Published Fri Aug 07, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Collimated light emission from inelastic electron tunneling enabled by a nonlocal plasmonic metasurface&lt;/span&gt;</dc:title>
    <dc:creator>Yu Wu, Dudu Song, Zhengyi Lu, Shunping Zhang, and Hongxing Xu</dc:creator>
    <dc:date>2026-08-07T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/64r3-vdww</dc:identifier>
    <prism:doi>10.1103/64r3-vdww</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-07T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/9707fA5aAa6Ec516003285a4ad908a896be5f2d4d</prism:url>
    <dc:subject>Letters</dc:subject>
    <prism:section>Letters</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/fb073Y81Xf01799619155be7fd3f09ff2e25bea74">
    <title>&lt;span&gt;Distributed variational quantum computing with deterministic entanglement tuning&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/fb073Y81Xf01799619155be7fd3f09ff2e25bea74</link>
    <description>Author(s): Ilhwan Kim, Yong-Su Kim, Kwang Jo Lee, Hyukjoon Kwon, Yosep Kim, and Hyang-Tag Lim&lt;br/&gt;&lt;span&gt;Distributed quantum computing offers a scalable route to quantum information processing by entangling spatially separated processors. Although gate teleportation enables universal computation across distributed nodes, it requires repeated consumption of high-fidelity Bell pairs, ancillary qubits, an…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Thu Aug 06, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Ilhwan Kim, Yong-Su Kim, Kwang Jo Lee, Hyukjoon Kwon, Yosep Kim, and Hyang-Tag Lim</p><span>Distributed quantum computing offers a scalable route to quantum information processing by entangling spatially separated processors. Although gate teleportation enables universal computation across distributed nodes, it requires repeated consumption of high-fidelity Bell pairs, ancillary qubits, an…</span><br/><p>[Phys. Rev. Applied] Published Thu Aug 06, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Distributed variational quantum computing with deterministic entanglement tuning&lt;/span&gt;</dc:title>
    <dc:creator>Ilhwan Kim, Yong-Su Kim, Kwang Jo Lee, Hyukjoon Kwon, Yosep Kim, and Hyang-Tag Lim</dc:creator>
    <dc:date>2026-08-06T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/9pj6-prlz</dc:identifier>
    <prism:doi>10.1103/9pj6-prlz</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-06T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/fb073Y81Xf01799619155be7fd3f09ff2e25bea74</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/23079A2aTa917801b42692982e8993498d4438e18">
    <title>&lt;span&gt;Nonideal subthreshold swing in aligned carbon nanotube transistors due to variable-occupancy discrete charge traps&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/23079A2aTa917801b42692982e8993498d4438e18</link>
    <description>Author(s): Saurabh S. Sawant, Teo Lara, François Léonard, Zhi (Jackie) Yao, and Andrew Nonaka&lt;br/&gt;&lt;span&gt;Carbon nanotube transistors have been experimentally demonstrated to reach performance comparable and even surpassing that of silicon transistors. Further improvement requires addressing non-idealities arising from device fabrication that impact performance and reproducibility. One performance metri…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Thu Aug 06, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Saurabh S. Sawant, Teo Lara, François Léonard, Zhi (Jackie) Yao, and Andrew Nonaka</p><span>Carbon nanotube transistors have been experimentally demonstrated to reach performance comparable and even surpassing that of silicon transistors. Further improvement requires addressing non-idealities arising from device fabrication that impact performance and reproducibility. One performance metri…</span><br/><p>[Phys. Rev. Applied] Published Thu Aug 06, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Nonideal subthreshold swing in aligned carbon nanotube transistors due to variable-occupancy discrete charge traps&lt;/span&gt;</dc:title>
    <dc:creator>Saurabh S. Sawant, Teo Lara, François Léonard, Zhi (Jackie) Yao, and Andrew Nonaka</dc:creator>
    <dc:date>2026-08-06T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/m25k-qfgk</dc:identifier>
    <prism:doi>10.1103/m25k-qfgk</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-06T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/23079A2aTa917801b42692982e8993498d4438e18</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/ea074Y08Tf72500989188e14dfe1466bdf9d453c8">
    <title>&lt;span&gt;Fast readout of quantum dot spin qubits via Andreev spins&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/ea074Y08Tf72500989188e14dfe1466bdf9d453c8</link>
    <description>Author(s): Michèle Jakob, Katharina Laubscher, Patrick Del Vecchio, Anasua Chatterjee, Valla Fatemi, and Stefano Bosco&lt;br/&gt;&lt;span&gt;Spin qubits in semiconducting quantum dots are currently limited by slow readout processes, which are orders of magnitude slower than gate operations. In contrast, Andreev spin qubits benefit from fast measurement schemes enabled by the large resonator couplings of superconducting qubits but suffer …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Wed Aug 05, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Michèle Jakob, Katharina Laubscher, Patrick Del Vecchio, Anasua Chatterjee, Valla Fatemi, and Stefano Bosco</p><span>Spin qubits in semiconducting quantum dots are currently limited by slow readout processes, which are orders of magnitude slower than gate operations. In contrast, Andreev spin qubits benefit from fast measurement schemes enabled by the large resonator couplings of superconducting qubits but suffer …</span><br/><p>[Phys. Rev. Applied] Published Wed Aug 05, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Fast readout of quantum dot spin qubits via Andreev spins&lt;/span&gt;</dc:title>
    <dc:creator>Michèle Jakob, Katharina Laubscher, Patrick Del Vecchio, Anasua Chatterjee, Valla Fatemi, and Stefano Bosco</dc:creator>
    <dc:date>2026-08-05T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/qcch-2hhy</dc:identifier>
    <prism:doi>10.1103/qcch-2hhy</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-05T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/ea074Y08Tf72500989188e14dfe1466bdf9d453c8</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/98076Ad6Y5d1a007e55a3d04f8e14a62771cc8033">
    <title>&lt;span&gt;Polarization-induced anisotropic plasmonic nanobubbles&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/98076Ad6Y5d1a007e55a3d04f8e14a62771cc8033</link>
    <description>Author(s): Yukun Ji, Yatao Ren, and Hong Qi&lt;br/&gt;&lt;span&gt;Plasmonic nanobubbles are extensively employed in many fields owing to their distinctive optical and photothermal properties. The mechanisms behind nanobubble formation have attracted growing attention. This work proposes a model combined with the Lattice Boltzmann method and multilayer Mie theory t…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Wed Aug 05, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Yukun Ji, Yatao Ren, and Hong Qi</p><span>Plasmonic nanobubbles are extensively employed in many fields owing to their distinctive optical and photothermal properties. The mechanisms behind nanobubble formation have attracted growing attention. This work proposes a model combined with the Lattice Boltzmann method and multilayer Mie theory t…</span><br/><p>[Phys. Rev. Applied] Published Wed Aug 05, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Polarization-induced anisotropic plasmonic nanobubbles&lt;/span&gt;</dc:title>
    <dc:creator>Yukun Ji, Yatao Ren, and Hong Qi</dc:creator>
    <dc:date>2026-08-05T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/hzxb-g8ws</dc:identifier>
    <prism:doi>10.1103/hzxb-g8ws</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-05T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/98076Ad6Y5d1a007e55a3d04f8e14a62771cc8033</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/ca079A96C881bf0695ab80c698d7900bb6dc80d14">
    <title>&lt;span&gt;Disorder-independent hole-spin manipulation by hopping&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/ca079A96C881bf0695ab80c698d7900bb6dc80d14</link>
    <description>Author(s): Biel Martinez, Ana Sempere-Sanchis, José C. Abadillo-Uriel, and Yann-Michel Niquet&lt;br/&gt;&lt;span&gt;Spin manipulation by hopping has recently emerged as a promising strategy to control hole spins in quantum dots using exclusively baseband control, thereby mitigating power dissipation and highfrequency management constraints in large-scale architectures. Unlike conventional approaches such as elect…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Wed Aug 05, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Biel Martinez, Ana Sempere-Sanchis, José C. Abadillo-Uriel, and Yann-Michel Niquet</p><span>Spin manipulation by hopping has recently emerged as a promising strategy to control hole spins in quantum dots using exclusively baseband control, thereby mitigating power dissipation and highfrequency management constraints in large-scale architectures. Unlike conventional approaches such as elect…</span><br/><p>[Phys. Rev. Applied] Published Wed Aug 05, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Disorder-independent hole-spin manipulation by hopping&lt;/span&gt;</dc:title>
    <dc:creator>Biel Martinez, Ana Sempere-Sanchis, José C. Abadillo-Uriel, and Yann-Michel Niquet</dc:creator>
    <dc:date>2026-08-05T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/qwgc-mwzn</dc:identifier>
    <prism:doi>10.1103/qwgc-mwzn</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-08-05T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/ca079A96C881bf0695ab80c698d7900bb6dc80d14</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/cd074A6cEc71d204a6f6124137f838b353081356f">
    <title>&lt;span&gt;Single-photon-boosted type-I fusion gates&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/cd074A6cEc71d204a6f6124137f838b353081356f</link>
    <description>Author(s): A. A. Melkozerov, S. S. Straupe, and M. Yu. Saygin&lt;br/&gt;&lt;span&gt;Fusion measurements are a key primitive for linear-optical quantum computing and quantum networks. Type-I and type-II fusion gates are widely used to combine small entangled resource states into larger photonic states, but without ancillary resources their success probability is limited to $1/2$. Ex…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Thu Jul 30, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): A. A. Melkozerov, S. S. Straupe, and M. Yu. Saygin</p><span>Fusion measurements are a key primitive for linear-optical quantum computing and quantum networks. Type-I and type-II fusion gates are widely used to combine small entangled resource states into larger photonic states, but without ancillary resources their success probability is limited to <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mn>1</mn><mi>/</mi><mn>2</mn></mrow></math>. Exis…</span><br/><p>[Phys. Rev. Applied] Published Thu Jul 30, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Single-photon-boosted type-I fusion gates&lt;/span&gt;</dc:title>
    <dc:creator>A. A. Melkozerov, S. S. Straupe, and M. Yu. Saygin</dc:creator>
    <dc:date>2026-07-30T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/jy5k-6ptg</dc:identifier>
    <prism:doi>10.1103/jy5k-6ptg</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-30T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/cd074A6cEc71d204a6f6124137f838b353081356f</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/34073A8bE8210c0f76d20792a4dd6f7baef44b47c">
    <title>&lt;span&gt;Empirical extension of the ridge regression theorem to nonlinear least-squares estimation with application to myelin water mapping using magnetic resonance imaging&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/34073A8bE8210c0f76d20792a4dd6f7baef44b47c</link>
    <description>Author(s): Griffin S. Hampton, Ryan Neff, Jeffrey Han, Aditee Prabhutendolkar, Zezheng Song, Mustapha Bouhrara, Radu Balan, and Richard G. Spencer&lt;br/&gt;&lt;span&gt;Purpose: Parameter estimation from biexponential models is a notoriously ill-posed problem, often yielding highly inaccurate estimates that are strongly influenced by noise. We present a simple but nonconventional approach to regularizing nonlinear least-squares (NLLS) parameter estimation and apply…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Wed Jul 29, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Griffin S. Hampton, Ryan Neff, Jeffrey Han, Aditee Prabhutendolkar, Zezheng Song, Mustapha Bouhrara, Radu Balan, and Richard G. Spencer</p><span>Purpose: Parameter estimation from biexponential models is a notoriously ill-posed problem, often yielding highly inaccurate estimates that are strongly influenced by noise. We present a simple but nonconventional approach to regularizing nonlinear least-squares (NLLS) parameter estimation and apply…</span><br/><p>[Phys. Rev. Applied] Published Wed Jul 29, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Empirical extension of the ridge regression theorem to nonlinear least-squares estimation with application to myelin water mapping using magnetic resonance imaging&lt;/span&gt;</dc:title>
    <dc:creator>Griffin S. Hampton, Ryan Neff, Jeffrey Han, Aditee Prabhutendolkar, Zezheng Song, Mustapha Bouhrara, Radu Balan, and Richard G. Spencer</dc:creator>
    <dc:date>2026-07-29T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/zk7b-yvs7</dc:identifier>
    <prism:doi>10.1103/zk7b-yvs7</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-29T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/34073A8bE8210c0f76d20792a4dd6f7baef44b47c</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/8007bAffG401e80af62315b60b845b7784575516c">
    <title>&lt;span&gt;Roles of quadratic and biquadratic couplings in the spin-wave modes of Co-Fe/Ru/Ni-Fe artificial spin ices&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/8007bAffG401e80af62315b60b845b7784575516c</link>
    <description>Author(s): Riccardo Fornari, Mohammad Tomal Hossain, Raffaele Silvani, Vinayak Shantaram Bhat, Rawnak Sultana, M. Benjamin Jungfleisch, and Gianluca Gubbiotti&lt;br/&gt;&lt;span&gt;We investigate the interplay between quadratic and biquadratic exchange coupling in an exchange-coupled CoFe/Ru/NiFe synthetic ferrimagnetic structure and compare its behavior to that of the same trilayer, patterned into an artificial spin lattice (ASI). The static and dynamic properties are investi…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Wed Jul 29, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Riccardo Fornari, Mohammad Tomal Hossain, Raffaele Silvani, Vinayak Shantaram Bhat, Rawnak Sultana, M. Benjamin Jungfleisch, and Gianluca Gubbiotti</p><span>We investigate the interplay between quadratic and biquadratic exchange coupling in an exchange-coupled CoFe/Ru/NiFe synthetic ferrimagnetic structure and compare its behavior to that of the same trilayer, patterned into an artificial spin lattice (ASI). The static and dynamic properties are investi…</span><br/><p>[Phys. Rev. Applied] Published Wed Jul 29, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Roles of quadratic and biquadratic couplings in the spin-wave modes of Co-Fe/Ru/Ni-Fe artificial spin ices&lt;/span&gt;</dc:title>
    <dc:creator>Riccardo Fornari, Mohammad Tomal Hossain, Raffaele Silvani, Vinayak Shantaram Bhat, Rawnak Sultana, M. Benjamin Jungfleisch, and Gianluca Gubbiotti</dc:creator>
    <dc:date>2026-07-29T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/5c9l-5w7v</dc:identifier>
    <prism:doi>10.1103/5c9l-5w7v</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-29T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/8007bAffG401e80af62315b60b845b7784575516c</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/9707eAfaE84Eb611708588194603cfaa782e876c9">
    <title>&lt;span&gt;High-fidelity transmon reset with a multimode acoustic resonator&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/9707eAfaE84Eb611708588194603cfaa782e876c9</link>
    <description>Author(s): Andraž Omahen, Simon Storz, Igor Kladarić, and Yiwen Chu&lt;br/&gt;&lt;span&gt;Achieving sufficiently low residual excited-state populations remains a key challenge in superconducting quantum circuits, particularly for protocols operating close to noise limits or requiring repeated qubit initialization. Existing protocols primarily address this challenge through sophisticated …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Wed Jul 29, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Andraž Omahen, Simon Storz, Igor Kladarić, and Yiwen Chu</p><span>Achieving sufficiently low residual excited-state populations remains a key challenge in superconducting quantum circuits, particularly for protocols operating close to noise limits or requiring repeated qubit initialization. Existing protocols primarily address this challenge through sophisticated …</span><br/><p>[Phys. Rev. Applied] Published Wed Jul 29, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;High-fidelity transmon reset with a multimode acoustic resonator&lt;/span&gt;</dc:title>
    <dc:creator>Andraž Omahen, Simon Storz, Igor Kladarić, and Yiwen Chu</dc:creator>
    <dc:date>2026-07-29T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/smfk-gfkm</dc:identifier>
    <prism:doi>10.1103/smfk-gfkm</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-29T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/9707eAfaE84Eb611708588194603cfaa782e876c9</prism:url>
    <dc:subject>Letters</dc:subject>
    <prism:section>Letters</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/9f07bA8aE0018c0a154a4c23cd22c5a842b3b16dd">
    <title>&lt;span&gt;Programmable dynamic phase control of a quasiperiodic optical lattice&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/9f07bA8aE0018c0a154a4c23cd22c5a842b3b16dd</link>
    <description>Author(s): Andrew O. Neely, Cedric C. Wilson, Ryan Everly, Yu Yao, Raffaella F. Zanetti, and Charles D. Brown&lt;br/&gt;&lt;span&gt;The quantum dynamics of quasiperiodic systems display a rich variety of physical behaviors due to the combination of rotational symmetry that is mathematically forbidden in periodic systems, and long-range order despite the lack of translation symmetry. New experimental probes into these dynamics wi…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Jul 27, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Andrew O. Neely, Cedric C. Wilson, Ryan Everly, Yu Yao, Raffaella F. Zanetti, and Charles D. Brown</p><span>The quantum dynamics of quasiperiodic systems display a rich variety of physical behaviors due to the combination of rotational symmetry that is mathematically forbidden in periodic systems, and long-range order despite the lack of translation symmetry. New experimental probes into these dynamics wi…</span><br/><p>[Phys. Rev. Applied] Published Mon Jul 27, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Programmable dynamic phase control of a quasiperiodic optical lattice&lt;/span&gt;</dc:title>
    <dc:creator>Andrew O. Neely, Cedric C. Wilson, Ryan Everly, Yu Yao, Raffaella F. Zanetti, and Charles D. Brown</dc:creator>
    <dc:date>2026-07-27T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/z5xd-vqh9</dc:identifier>
    <prism:doi>10.1103/z5xd-vqh9</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-27T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/9f07bA8aE0018c0a154a4c23cd22c5a842b3b16dd</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/c607fY2bF7a2cf0c337a016983388c60fc2dedba6">
    <title>&lt;span&gt;Time-resolved observation of conversion of spin and orbital currents to charge currents in spintronic and orbitronic terahertz radiation emitters&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/c607fY2bF7a2cf0c337a016983388c60fc2dedba6</link>
    <description>Author(s): Basem Y. Shahriar and Abdulhakem Y. Elezzabi&lt;br/&gt;&lt;span&gt;The conversion of ultrafast spin and orbital currents into charge currents underpins the generation of terahertz (THz) radiation in magnetic multilayers, yet the fundamental timescales of these processes remain largely unexplored. Here, we directly measure the absolute onset times from femtosecond l…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Fri Jul 24, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Basem Y. Shahriar and Abdulhakem Y. Elezzabi</p><span>The conversion of ultrafast spin and orbital currents into charge currents underpins the generation of terahertz (THz) radiation in magnetic multilayers, yet the fundamental timescales of these processes remain largely unexplored. Here, we directly measure the absolute onset times from femtosecond l…</span><br/><p>[Phys. Rev. Applied] Published Fri Jul 24, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Time-resolved observation of conversion of spin and orbital currents to charge currents in spintronic and orbitronic terahertz radiation emitters&lt;/span&gt;</dc:title>
    <dc:creator>Basem Y. Shahriar and Abdulhakem Y. Elezzabi</dc:creator>
    <dc:date>2026-07-24T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/kd7z-zh69</dc:identifier>
    <prism:doi>10.1103/kd7z-zh69</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-24T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/c607fY2bF7a2cf0c337a016983388c60fc2dedba6</prism:url>
    <dc:subject>Letters</dc:subject>
    <prism:section>Letters</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/bb074AbeSf31220dd4f192c625dc96649cb60ca9d">
    <title>&lt;span&gt;Models of liquid-sample confinement for nanoscale NMR&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/bb074AbeSf31220dd4f192c625dc96649cb60ca9d</link>
    <description>Author(s): Santiago Oviedo-Casado, Daniel Cohen, Allan Josué González-Villalobos, and Javier Cerrillo&lt;br/&gt;&lt;span&gt;Diffusion is a prominent source of noise affecting nuclear magnetic resonance at the nanometer scale (nano-NMR), preventing high resolution studies of unpolarized liquid samples and hindering the development of nanofluid devices. Actively managing diffusion noise through sample confinement, is likel…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Fri Jul 24, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Santiago Oviedo-Casado, Daniel Cohen, Allan Josué González-Villalobos, and Javier Cerrillo</p><span>Diffusion is a prominent source of noise affecting nuclear magnetic resonance at the nanometer scale (nano-NMR), preventing high resolution studies of unpolarized liquid samples and hindering the development of nanofluid devices. Actively managing diffusion noise through sample confinement, is likel…</span><br/><p>[Phys. Rev. Applied] Published Fri Jul 24, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Models of liquid-sample confinement for nanoscale NMR&lt;/span&gt;</dc:title>
    <dc:creator>Santiago Oviedo-Casado, Daniel Cohen, Allan Josué González-Villalobos, and Javier Cerrillo</dc:creator>
    <dc:date>2026-07-24T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/7hbs-1q24</dc:identifier>
    <prism:doi>10.1103/7hbs-1q24</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-24T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/bb074AbeSf31220dd4f192c625dc96649cb60ca9d</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/08079Ad7A7012509264a14d4959446d51a2f8bd4a">
    <title>&lt;span&gt;Near-field planar antenna for microwave excitation of paramagnetic quantum emitters&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/08079Ad7A7012509264a14d4959446d51a2f8bd4a</link>
    <description>Author(s): Stefano Lagomarsino and Mario Agio&lt;br/&gt;&lt;span&gt;The concept of a microwave planar antenna for the excitation of dielectric paramagnetic media is proposed. The shape and size of the electrodes are designed for the generation of a uniform magnetic field parallel to the surfaces of a single- or multi-layer dielectric, with specific resonance frequen…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Thu Jul 23, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Stefano Lagomarsino and Mario Agio</p><span>The concept of a microwave planar antenna for the excitation of dielectric paramagnetic media is proposed. The shape and size of the electrodes are designed for the generation of a uniform magnetic field parallel to the surfaces of a single- or multi-layer dielectric, with specific resonance frequen…</span><br/><p>[Phys. Rev. Applied] Published Thu Jul 23, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Near-field planar antenna for microwave excitation of paramagnetic quantum emitters&lt;/span&gt;</dc:title>
    <dc:creator>Stefano Lagomarsino and Mario Agio</dc:creator>
    <dc:date>2026-07-23T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/rhmf-tf2r</dc:identifier>
    <prism:doi>10.1103/rhmf-tf2r</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-23T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/08079Ad7A7012509264a14d4959446d51a2f8bd4a</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/e3075AfbA3d12705364d17d58a85fda037d68f812">
    <title>&lt;span&gt;Generation and amplification of microwave signals via planar waveguides with embedded paramagnetic color centers&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/e3075AfbA3d12705364d17d58a85fda037d68f812</link>
    <description>Author(s): Stefano Lagomarsino and Mario Agio&lt;br/&gt;&lt;span&gt;A concept for microwave amplification and maser generation in compact planar waveguides embedding a thin layer of paramagnetic color centers is presented. The ground state of the color centers can be optically or electrically spin-polarized, while population inversion is attained by Zeeman shifting …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Thu Jul 23, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Stefano Lagomarsino and Mario Agio</p><span>A concept for microwave amplification and maser generation in compact planar waveguides embedding a thin layer of paramagnetic color centers is presented. The ground state of the color centers can be optically or electrically spin-polarized, while population inversion is attained by Zeeman shifting …</span><br/><p>[Phys. Rev. Applied] Published Thu Jul 23, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Generation and amplification of microwave signals via planar waveguides with embedded paramagnetic color centers&lt;/span&gt;</dc:title>
    <dc:creator>Stefano Lagomarsino and Mario Agio</dc:creator>
    <dc:date>2026-07-23T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/ydkl-pjfx</dc:identifier>
    <prism:doi>10.1103/ydkl-pjfx</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-23T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/e3075AfbA3d12705364d17d58a85fda037d68f812</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/cb074A4eC8811707e5211a872cf9364ec3267a40e">
    <title>&lt;span&gt;Electrically and optically active charge carrier traps in silicon-doped few-layer GaSe&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/cb074A4eC8811707e5211a872cf9364ec3267a40e</link>
    <description>Author(s): M. Bissolo, R. Li, M. Ogura, Z. Sofer, S. Polesya, D. Han, A. W. Holleitner, C. Kastl, G. Koblmüller, H. Ebert, E. Zallo, and J. J. Finley&lt;br/&gt;&lt;span&gt;Understanding defects in atomically thin van der Waals (vdW) semiconductors is essential for advancing their use in next-generation optoelectronic and photovoltaic devices. Here, we apply a combination of various impedance spectroscopy techniques to two-dimensional (2D) vdW GaSe doped with silicon (…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Thu Jul 23, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): M. Bissolo, R. Li, M. Ogura, Z. Sofer, S. Polesya, D. Han, A. W. Holleitner, C. Kastl, G. Koblmüller, H. Ebert, E. Zallo, and J. J. Finley</p><span>Understanding defects in atomically thin van der Waals (vdW) semiconductors is essential for advancing their use in next-generation optoelectronic and photovoltaic devices. Here, we apply a combination of various impedance spectroscopy techniques to two-dimensional (2D) vdW GaSe doped with silicon (…</span><br/><p>[Phys. Rev. Applied] Published Thu Jul 23, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Electrically and optically active charge carrier traps in silicon-doped few-layer GaSe&lt;/span&gt;</dc:title>
    <dc:creator>M. Bissolo, R. Li, M. Ogura, Z. Sofer, S. Polesya, D. Han, A. W. Holleitner, C. Kastl, G. Koblmüller, H. Ebert, E. Zallo, and J. J. Finley</dc:creator>
    <dc:date>2026-07-23T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/8w6z-vwvm</dc:identifier>
    <prism:doi>10.1103/8w6z-vwvm</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-23T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/cb074A4eC8811707e5211a872cf9364ec3267a40e</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/8007fA34R941cb00352544312142604d4dd15d1ca">
    <title>&lt;span&gt;Composition-dependent $k⋅p$ band parameters for wurtzite (Al,Ga)N alloys from density functional theory&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/8007fA34R941cb00352544312142604d4dd15d1ca</link>
    <description>Author(s): Amit Kumar Singh, Alvaro Gomez-Iglesias, and Stefan Schulz&lt;br/&gt;&lt;span&gt;Ultraviolet light emitters based on the semiconductor alloy aluminium gallium nitride, (Al,Ga)N, have attracted significant interest in recent years due to their potential for optoelectronic devices. To guide the design of such devices with improved efficiencies, theoretical frameworks based on so-c…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Wed Jul 22, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Amit Kumar Singh, Alvaro Gomez-Iglesias, and Stefan Schulz</p><span>Ultraviolet light emitters based on the semiconductor alloy aluminium gallium nitride, (Al,Ga)N, have attracted significant interest in recent years due to their potential for optoelectronic devices. To guide the design of such devices with improved efficiencies, theoretical frameworks based on so-c…</span><br/><p>[Phys. Rev. Applied] Published Wed Jul 22, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Composition-dependent $k⋅p$ band parameters for wurtzite (Al,Ga)N alloys from density functional theory&lt;/span&gt;</dc:title>
    <dc:creator>Amit Kumar Singh, Alvaro Gomez-Iglesias, and Stefan Schulz</dc:creator>
    <dc:date>2026-07-22T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/fk4v-ynth</dc:identifier>
    <prism:doi>10.1103/fk4v-ynth</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-22T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/8007fA34R941cb00352544312142604d4dd15d1ca</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/77075A67Z9310b0045295715ec2b151e0a3f2b0e4">
    <title>&lt;span&gt;Integration architecture for a pocket-sized quantum vector magnetometer using spin defects in silicon carbide&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/77075A67Z9310b0045295715ec2b151e0a3f2b0e4</link>
    <description>Author(s): Andreas Gottscholl, Corey J. Cochrane, and Hannes Kraus&lt;br/&gt;&lt;span&gt;We present a miniaturized, modular vector magnetometer based on silicon vacancy (${V}_{Si}^{−}$) centers in 4H-SiC. While NV-diamond magnetometers can offer high sensitivity, spacecraft integration is often complicated by their requirement for disruptive, mT-scale bias fields. Our SiC architecture i…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Tue Jul 21, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Andreas Gottscholl, Corey J. Cochrane, and Hannes Kraus</p><span>We present a miniaturized, modular vector magnetometer based on silicon vacancy (<math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><msubsup><mstyle mathvariant="normal"><mi>V</mi></mstyle><mstyle mathvariant="normal"><mi>S</mi><mi>i</mi></mstyle><mo>−</mo></msubsup></math>) centers in 4H-SiC. While NV-diamond magnetometers can offer high sensitivity, spacecraft integration is often complicated by their requirement for disruptive, mT-scale bias fields. Our SiC architecture instead ena…</span><br/><p>[Phys. Rev. Applied] Published Tue Jul 21, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Integration architecture for a pocket-sized quantum vector magnetometer using spin defects in silicon carbide&lt;/span&gt;</dc:title>
    <dc:creator>Andreas Gottscholl, Corey J. Cochrane, and Hannes Kraus</dc:creator>
    <dc:date>2026-07-21T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/51zn-q6t6</dc:identifier>
    <prism:doi>10.1103/51zn-q6t6</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-21T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/77075A67Z9310b0045295715ec2b151e0a3f2b0e4</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/a307aDefA3212c0b418700493e83c2a8c0fe47ee9">
    <title>&lt;span&gt;Experimental signatures of a $\stackrel{̂}{Z}\stackrel{̂}{X}$ beam-splitter interaction between Kerr-cat and transmon qubits&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/a307aDefA3212c0b418700493e83c2a8c0fe47ee9</link>
    <description>Author(s): Josiah Cochran, Haley M. Cole, Hebah Goderya, Zhuoqun Hao, Yao-Chun Chang, Theo Shaw, Aikaterini Kargioti, and Shyam Shankar&lt;br/&gt;&lt;span&gt;Quantum error correction (QEC) requires ancilla qubits to extract error syndromes from data qubits which store quantum information. However, ancilla errors can propagate back to the data qubits, introducing additional errors and limiting fault-tolerance. In superconducting quantum circuits, Kerr-cat…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Tue Jul 21, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Josiah Cochran, Haley M. Cole, Hebah Goderya, Zhuoqun Hao, Yao-Chun Chang, Theo Shaw, Aikaterini Kargioti, and Shyam Shankar</p><span>Quantum error correction (QEC) requires ancilla qubits to extract error syndromes from data qubits which store quantum information. However, ancilla errors can propagate back to the data qubits, introducing additional errors and limiting fault-tolerance. In superconducting quantum circuits, Kerr-cat…</span><br/><p>[Phys. Rev. Applied] Published Tue Jul 21, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Experimental signatures of a $\stackrel{̂}{Z}\stackrel{̂}{X}$ beam-splitter interaction between Kerr-cat and transmon qubits&lt;/span&gt;</dc:title>
    <dc:creator>Josiah Cochran, Haley M. Cole, Hebah Goderya, Zhuoqun Hao, Yao-Chun Chang, Theo Shaw, Aikaterini Kargioti, and Shyam Shankar</dc:creator>
    <dc:date>2026-07-21T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/sbsz-l4g5</dc:identifier>
    <prism:doi>10.1103/sbsz-l4g5</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-21T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/a307aDefA3212c0b418700493e83c2a8c0fe47ee9</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/d407bA02E0514501655b7d78ac0e73810812d3ec0">
    <title>&lt;span&gt;Measurement-induced state transitions across the fluxonium qubit landscape&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/d407bA02E0514501655b7d78ac0e73810812d3ec0</link>
    <description>Author(s): Alex A. Chapple, Boris M. Varbanov, Alexander McDonald, and Alexandre Blais&lt;br/&gt;&lt;span&gt;Understanding the mechanisms that limit high-fidelity readout in circuit quantum electrodynamics is essential for its optimization. Multi-photon resonances are understood to be a limiting factor, causing population transfer from the computational states to higher-energy states under drive. This effe…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Jul 20, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Alex A. Chapple, Boris M. Varbanov, Alexander McDonald, and Alexandre Blais</p><span>Understanding the mechanisms that limit high-fidelity readout in circuit quantum electrodynamics is essential for its optimization. Multi-photon resonances are understood to be a limiting factor, causing population transfer from the computational states to higher-energy states under drive. This effe…</span><br/><p>[Phys. Rev. Applied] Published Mon Jul 20, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Measurement-induced state transitions across the fluxonium qubit landscape&lt;/span&gt;</dc:title>
    <dc:creator>Alex A. Chapple, Boris M. Varbanov, Alexander McDonald, and Alexandre Blais</dc:creator>
    <dc:date>2026-07-20T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/n2qr-9p7z</dc:identifier>
    <prism:doi>10.1103/n2qr-9p7z</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-20T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/d407bA02E0514501655b7d78ac0e73810812d3ec0</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/3d07bA8aD831ac0d678e09f60acca77160e34d89e">
    <title>&lt;span&gt;Quadrature-symmetric scheme for robust quantum control beyond the ideal-pulse approximation&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/3d07bA8aD831ac0d678e09f60acca77160e34d89e</link>
    <description>Author(s): Mayur Jhamnani, Venkata SubbaRao Redrouthu, José P. Carvalho, Ethan Feldman, Anders B. Nielsen, Phani Kumar, Niels Chr. Nielsen, P. K. Madhu, and Asif Equbal&lt;br/&gt;&lt;span&gt;PulsePol is an elegantly designed pulse-sequence-based quantum control scheme that enables polarization transfer between electron and nuclear spins. However, previous analyses of PulsePol assumed very strong, close to ideal, instantaneous microwave pulses, which is rarely achievable as one goes to h…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Fri Jul 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Mayur Jhamnani, Venkata SubbaRao Redrouthu, José P. Carvalho, Ethan Feldman, Anders B. Nielsen, Phani Kumar, Niels Chr. Nielsen, P. K. Madhu, and Asif Equbal</p><span>PulsePol is an elegantly designed pulse-sequence-based quantum control scheme that enables polarization transfer between electron and nuclear spins. However, previous analyses of PulsePol assumed very strong, close to ideal, instantaneous microwave pulses, which is rarely achievable as one goes to h…</span><br/><p>[Phys. Rev. Applied] Published Fri Jul 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Quadrature-symmetric scheme for robust quantum control beyond the ideal-pulse approximation&lt;/span&gt;</dc:title>
    <dc:creator>Mayur Jhamnani, Venkata SubbaRao Redrouthu, José P. Carvalho, Ethan Feldman, Anders B. Nielsen, Phani Kumar, Niels Chr. Nielsen, P. K. Madhu, and Asif Equbal</dc:creator>
    <dc:date>2026-07-17T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/b4tk-xgl9</dc:identifier>
    <prism:doi>10.1103/b4tk-xgl9</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/3d07bA8aD831ac0d678e09f60acca77160e34d89e</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/62072A72Cd31d506b5867f2265de00c05f17a9c8e">
    <title>&lt;span&gt;RASER-resolved ${}^{129}$Xe chemical shifts in an inhomogeneous ultralow magnetic field&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/62072A72Cd31d506b5867f2265de00c05f17a9c8e</link>
    <description>Author(s): Sebastian W. Atalla, Andrew K. Maresca, Aaron J. Ferreira, Nikolas M. Jauch, and Rosa T. Branca&lt;br/&gt;&lt;span&gt;Low field NMR spectroscopy ($&amp;lt;$1T)oftensuffersfromreducedsensitivityduetolownuclearspinpolarization,magneticfieldinhomogeneities,andpoorchemicalshiftresolution,comparedtohighfieldsystems,andthelowLarmorfrequencyatlowfieldlimitstheachievablequalityfactor($Q$)ofNMRdetectioncircuits.Thesefactorsmayr…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Tue Jul 14, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Sebastian W. Atalla, Andrew K. Maresca, Aaron J. Ferreira, Nikolas M. Jauch, and Rosa T. Branca</p><span>Low field NMR spectroscopy ($&lt;<math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mn>1</mn><mi>T</mi><mo stretchy="false" form="postfix">)</mo><mi>o</mi><mi>f</mi><mi>t</mi><mi>e</mi><mi>n</mi><mi>s</mi><mi>u</mi><mi>f</mi><mi>f</mi><mi>e</mi><mi>r</mi><mi>s</mi><mi>f</mi><mi>r</mi><mi>o</mi><mi>m</mi><mi>r</mi><mi>e</mi><mi>d</mi><mi>u</mi><mi>c</mi><mi>e</mi><mi>d</mi><mi>s</mi><mi>e</mi><mi>n</mi><mi>s</mi><mi>i</mi><mi>t</mi><mi>i</mi><mi>v</mi><mi>i</mi><mi>t</mi><mi>y</mi><mi>d</mi><mi>u</mi><mi>e</mi><mi>t</mi><mi>o</mi><mi>l</mi><mi>o</mi><mi>w</mi><mi>n</mi><mi>u</mi><mi>c</mi><mi>l</mi><mi>e</mi><mi>a</mi><mi>r</mi><mi>s</mi><mi>p</mi><mi>i</mi><mi>n</mi><mi>p</mi><mi>o</mi><mi>l</mi><mi>a</mi><mi>r</mi><mi>i</mi><mi>z</mi><mi>a</mi><mi>t</mi><mi>i</mi><mi>o</mi><mi>n</mi><mo>,</mo><mi>m</mi><mi>a</mi><mi>g</mi><mi>n</mi><mi>e</mi><mi>t</mi><mi>i</mi><mi>c</mi><mi>f</mi><mi>i</mi><mi>e</mi><mi>l</mi><mi>d</mi><mi>i</mi><mi>n</mi><mi>h</mi><mi>o</mi><mi>m</mi><mi>o</mi><mi>g</mi><mi>e</mi><mi>n</mi><mi>e</mi><mi>i</mi><mi>t</mi><mi>i</mi><mi>e</mi><mi>s</mi><mo>,</mo><mi>a</mi><mi>n</mi><mi>d</mi><mi>p</mi><mi>o</mi><mi>o</mi><mi>r</mi><mi>c</mi><mi>h</mi><mi>e</mi><mi>m</mi><mi>i</mi><mi>c</mi><mi>a</mi><mi>l</mi><mi>s</mi><mi>h</mi><mi>i</mi><mi>f</mi><mi>t</mi><mi>r</mi><mi>e</mi><mi>s</mi><mi>o</mi><mi>l</mi><mi>u</mi><mi>t</mi><mi>i</mi><mi>o</mi><mi>n</mi><mo>,</mo><mi>c</mi><mi>o</mi><mi>m</mi><mi>p</mi><mi>a</mi><mi>r</mi><mi>e</mi><mi>d</mi><mi>t</mi><mi>o</mi><mi>h</mi><mi>i</mi><mi>g</mi><mi>h</mi><mi>f</mi><mi>i</mi><mi>e</mi><mi>l</mi><mi>d</mi><mi>s</mi><mi>y</mi><mi>s</mi><mi>t</mi><mi>e</mi><mi>m</mi><mi>s</mi><mo>,</mo><mi>a</mi><mi>n</mi><mi>d</mi><mi>t</mi><mi>h</mi><mi>e</mi><mi>l</mi><mi>o</mi><mi>w</mi><mi>L</mi><mi>a</mi><mi>r</mi><mi>m</mi><mi>o</mi><mi>r</mi><mi>f</mi><mi>r</mi><mi>e</mi><mi>q</mi><mi>u</mi><mi>e</mi><mi>n</mi><mi>c</mi><mi>y</mi><mi>a</mi><mi>t</mi><mi>l</mi><mi>o</mi><mi>w</mi><mi>f</mi><mi>i</mi><mi>e</mi><mi>l</mi><mi>d</mi><mi>l</mi><mi>i</mi><mi>m</mi><mi>i</mi><mi>t</mi><mi>s</mi><mi>t</mi><mi>h</mi><mi>e</mi><mi>a</mi><mi>c</mi><mi>h</mi><mi>i</mi><mi>e</mi><mi>v</mi><mi>a</mi><mi>b</mi><mi>l</mi><mi>e</mi><mi>q</mi><mi>u</mi><mi>a</mi><mi>l</mi><mi>i</mi><mi>t</mi><mi>y</mi><mi>f</mi><mi>a</mi><mi>c</mi><mi>t</mi><mi>o</mi><mi>r</mi><mo stretchy="false" form="prefix">(</mo></mrow></math>Q<math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mo stretchy="false" form="postfix">)</mo><mi>o</mi><mi>f</mi><mi>N</mi><mi>M</mi><mi>R</mi><mi>d</mi><mi>e</mi><mi>t</mi><mi>e</mi><mi>c</mi><mi>t</mi><mi>i</mi><mi>o</mi><mi>n</mi><mi>c</mi><mi>i</mi><mi>r</mi><mi>c</mi><mi>u</mi><mi>i</mi><mi>t</mi><mi>s</mi><mi>.</mi><mi>T</mi><mi>h</mi><mi>e</mi><mi>s</mi><mi>e</mi><mi>f</mi><mi>a</mi><mi>c</mi><mi>t</mi><mi>o</mi><mi>r</mi><mi>s</mi><mi>m</mi><mi>a</mi><mi>y</mi><mi>r</mi><mi>e</mi><mi>s</mi><mi>u</mi><mi>…</mi></mrow></math></span><br/><p>[Phys. Rev. Applied] Published Tue Jul 14, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;RASER-resolved ${}^{129}$Xe chemical shifts in an inhomogeneous ultralow magnetic field&lt;/span&gt;</dc:title>
    <dc:creator>Sebastian W. Atalla, Andrew K. Maresca, Aaron J. Ferreira, Nikolas M. Jauch, and Rosa T. Branca</dc:creator>
    <dc:date>2026-07-14T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/64np-3ndy</dc:identifier>
    <prism:doi>10.1103/64np-3ndy</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-14T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/62072A72Cd31d506b5867f2265de00c05f17a9c8e</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/65071Ad0T981db06c46d87320bcd1f36accccb2ff">
    <title>&lt;span&gt;Adaptive variation-resilient random-number generator for embedded encryption&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/65071Ad0T981db06c46d87320bcd1f36accccb2ff</link>
    <description>Author(s): Furqan Zahoor, Ibrahim A. Albulushi, Saleh Bunaiyan, Anupam Chattopadhyay, Hesham ElSawy, and Feras Al-Dirini&lt;br/&gt;&lt;span&gt;With a growing interest in securing user data within the internet-of-things (IoT), embedded encryption has become of paramount importance, requiring light-weight high-quality Random Number Generators (RNGs). Emerging stochastic device technologies produce random numbers from stochastic physical proc…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Tue Jul 14, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Furqan Zahoor, Ibrahim A. Albulushi, Saleh Bunaiyan, Anupam Chattopadhyay, Hesham ElSawy, and Feras Al-Dirini</p><span>With a growing interest in securing user data within the internet-of-things (IoT), embedded encryption has become of paramount importance, requiring light-weight high-quality Random Number Generators (RNGs). Emerging stochastic device technologies produce random numbers from stochastic physical proc…</span><br/><p>[Phys. Rev. Applied] Published Tue Jul 14, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Adaptive variation-resilient random-number generator for embedded encryption&lt;/span&gt;</dc:title>
    <dc:creator>Furqan Zahoor, Ibrahim A. Albulushi, Saleh Bunaiyan, Anupam Chattopadhyay, Hesham ElSawy, and Feras Al-Dirini</dc:creator>
    <dc:date>2026-07-14T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/6yyk-321x</dc:identifier>
    <prism:doi>10.1103/6yyk-321x</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-14T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/65071Ad0T981db06c46d87320bcd1f36accccb2ff</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/a4070A4bDf11610345445fb6b10ae13fc01fb3bd7">
    <title>&lt;span&gt;Narrow-linewidth Brillouin laser for a two-photon rubidium frequency standard&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/a4070A4bDf11610345445fb6b10ae13fc01fb3bd7</link>
    <description>Author(s): Kyle W. Martin, River Beard, Andrei Isichenko, Kaikai Liu, Daniel J. Blumenthal, Seth E. Erickson, Kaleb Campbell, and Sean Krzyzewski&lt;br/&gt;&lt;span&gt;High precision portable and deployable frequency standards are required for modern navigation and communication technologies. Optical frequency standards are attractive for their improved stability over their microwave counterparts; however, increased complexities have anchored them in the laborator…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Tue Jul 14, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Kyle W. Martin, River Beard, Andrei Isichenko, Kaikai Liu, Daniel J. Blumenthal, Seth E. Erickson, Kaleb Campbell, and Sean Krzyzewski</p><span>High precision portable and deployable frequency standards are required for modern navigation and communication technologies. Optical frequency standards are attractive for their improved stability over their microwave counterparts; however, increased complexities have anchored them in the laborator…</span><br/><p>[Phys. Rev. Applied] Published Tue Jul 14, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Narrow-linewidth Brillouin laser for a two-photon rubidium frequency standard&lt;/span&gt;</dc:title>
    <dc:creator>Kyle W. Martin, River Beard, Andrei Isichenko, Kaikai Liu, Daniel J. Blumenthal, Seth E. Erickson, Kaleb Campbell, and Sean Krzyzewski</dc:creator>
    <dc:date>2026-07-14T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/vgf7-kjlg</dc:identifier>
    <prism:doi>10.1103/vgf7-kjlg</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-14T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/a4070A4bDf11610345445fb6b10ae13fc01fb3bd7</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/65070Y34L0b1238337df81062e892bb53acb847ef">
    <title>&lt;span&gt;Gain-momentum locking in chiral-gain media&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/65070Y34L0b1238337df81062e892bb53acb847ef</link>
    <description>Author(s): João C. Serra, Nader Engheta, and Mário G. Silveirinha&lt;br/&gt;&lt;span&gt;Conventional optical materials are characterized by either a dissipative response, which results in polarization-independent absorption, or by a gain response that leads to wave amplification. In this work, we study a peculiar class of materials with chiral-gain properties, where gain selectively am…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Tue Jul 14, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): João C. Serra, Nader Engheta, and Mário G. Silveirinha</p><span>Conventional optical materials are characterized by either a dissipative response, which results in polarization-independent absorption, or by a gain response that leads to wave amplification. In this work, we study a peculiar class of materials with chiral-gain properties, where gain selectively am…</span><br/><p>[Phys. Rev. Applied] Published Tue Jul 14, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Gain-momentum locking in chiral-gain media&lt;/span&gt;</dc:title>
    <dc:creator>João C. Serra, Nader Engheta, and Mário G. Silveirinha</dc:creator>
    <dc:date>2026-07-14T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/8qmb-p6nk</dc:identifier>
    <prism:doi>10.1103/8qmb-p6nk</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-14T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/65070Y34L0b1238337df81062e892bb53acb847ef</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/e3071Ab9Cb5Ed911d0fa7434e7ed086c89db9d899">
    <title>&lt;span&gt;Toward high-resolution low-energy electron spectroscopy with transition-edge sensors&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/e3071Ab9Cb5Ed911d0fa7434e7ed086c89db9d899</link>
    <description>Author(s): R. Ammendola et al.&lt;br/&gt;&lt;span&gt;We present a study of the energy resolution of transition-edge sensors (TESs) for the detection of electrons in the 100~eV kinetic energy range. The TES is a Ti-Au bilayer with an active area of ($60×60$) $μ$m${}^{2}$ and a critical temperature of $∼80$~mK. The electron source is based on vertically…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Tue Jul 14, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): R. Ammendola et al.</p><span>We present a study of the energy resolution of transition-edge sensors (TESs) for the detection of electrons in the 100~eV kinetic energy range. The TES is a Ti-Au bilayer with an active area of (<math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mn>60</mn><mo>×</mo><mn>60</mn></mrow></math>) <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mi>μ</mi></math>m<math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><msup><mi></mi><mn>2</mn></msup></math> and a critical temperature of <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mo>∼</mo><mn>80</mn></mrow></math>~mK. The electron source is based on vertically-aligned mult…</span><br/><p>[Phys. Rev. Applied] Published Tue Jul 14, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Toward high-resolution low-energy electron spectroscopy with transition-edge sensors&lt;/span&gt;</dc:title>
    <dc:creator>R. Ammendola et al.</dc:creator>
    <dc:date>2026-07-14T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/dw1k-tcbp</dc:identifier>
    <prism:doi>10.1103/dw1k-tcbp</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-14T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/e3071Ab9Cb5Ed911d0fa7434e7ed086c89db9d899</prism:url>
    <dc:subject>Letters</dc:subject>
    <prism:section>Letters</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/74075Ad4Zcd15c0895c00994bc99a2cb20989a405">
    <title>&lt;span&gt;Investigation of low-frequency noise in Cryogenic CMOS devices through statistical single-defect spectroscopy&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/74075Ad4Zcd15c0895c00994bc99a2cb20989a405</link>
    <description>Author(s): E. Catapano, A. Varanasi, P. Roussel, R. Degraeve, Y. Higashi, R. Asanovski, B. Kaczer, J. Diaz-Fortuny, M. Waltl, V. Afanasiev, K. De Greve, and A. Grill&lt;br/&gt;&lt;span&gt;High 1/f noise in CryoCMOS devices is a critical parameter to keep under control in the design of complex circuits for low temperatures applications. Current models predict the 1/f noise to scale linearly with temperature, and gate oxide defects are expected to freeze out at cryogenic temperatures. …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Jul 13, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): E. Catapano, A. Varanasi, P. Roussel, R. Degraeve, Y. Higashi, R. Asanovski, B. Kaczer, J. Diaz-Fortuny, M. Waltl, V. Afanasiev, K. De Greve, and A. Grill</p><span>High 1/f noise in CryoCMOS devices is a critical parameter to keep under control in the design of complex circuits for low temperatures applications. Current models predict the 1/f noise to scale linearly with temperature, and gate oxide defects are expected to freeze out at cryogenic temperatures. …</span><br/><p>[Phys. Rev. Applied] Published Mon Jul 13, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Investigation of low-frequency noise in Cryogenic CMOS devices through statistical single-defect spectroscopy&lt;/span&gt;</dc:title>
    <dc:creator>E. Catapano, A. Varanasi, P. Roussel, R. Degraeve, Y. Higashi, R. Asanovski, B. Kaczer, J. Diaz-Fortuny, M. Waltl, V. Afanasiev, K. De Greve, and A. Grill</dc:creator>
    <dc:date>2026-07-13T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/zcnb-xpwj</dc:identifier>
    <prism:doi>10.1103/zcnb-xpwj</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-13T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/74075Ad4Zcd15c0895c00994bc99a2cb20989a405</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/17074KfcS861b81dd04b49a70dd4392c2ba0cfab4">
    <title>&lt;span&gt;Radiation-induced defect dynamics in two-dimensional/three-dimensional systems: A dimensionality advantage preserved within patterned graphene–SiC heterostructures&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/17074KfcS861b81dd04b49a70dd4392c2ba0cfab4</link>
    <description>Author(s): Maciej J. Szary, Jakub Jagiełło, Wiktoria Reddig, Artur Dobrowolski, Tymoteusz Ciuk, Rafał Prokopowicz, Maciej Ziemba, Marek Wzorek, and Semir El-Ahmar&lt;br/&gt;&lt;span&gt;2D/3D heterostructures provide a powerful platform for uncovering how reduced dimensionality governs radiation response. While two-dimensional (2D) materials such as graphene, transition metal dichalcogenides (TMDs), and MXenes have demonstrated notable structural resilience to radiation, fundamenta…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Tue Jul 07, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Maciej J. Szary, Jakub Jagiełło, Wiktoria Reddig, Artur Dobrowolski, Tymoteusz Ciuk, Rafał Prokopowicz, Maciej Ziemba, Marek Wzorek, and Semir El-Ahmar</p><span>2D/3D heterostructures provide a powerful platform for uncovering how reduced dimensionality governs radiation response. While two-dimensional (2D) materials such as graphene, transition metal dichalcogenides (TMDs), and MXenes have demonstrated notable structural resilience to radiation, fundamenta…</span><br/><p>[Phys. Rev. Applied] Published Tue Jul 07, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Radiation-induced defect dynamics in two-dimensional/three-dimensional systems: A dimensionality advantage preserved within patterned graphene–SiC heterostructures&lt;/span&gt;</dc:title>
    <dc:creator>Maciej J. Szary, Jakub Jagiełło, Wiktoria Reddig, Artur Dobrowolski, Tymoteusz Ciuk, Rafał Prokopowicz, Maciej Ziemba, Marek Wzorek, and Semir El-Ahmar</dc:creator>
    <dc:date>2026-07-07T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/xdmg-zbky</dc:identifier>
    <prism:doi>10.1103/xdmg-zbky</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-07T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/17074KfcS861b81dd04b49a70dd4392c2ba0cfab4</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/59075A65A2018a0f054341957bed90857e0f065f7">
    <title>&lt;span&gt;Two-photon-excited fluorescence spectroscopy of Rb atoms in a magneto-optical trap&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/59075A65A2018a0f054341957bed90857e0f065f7</link>
    <description>Author(s): Alan McLean, Christian Drago, Daniel Podos, Chengyi Luo, Caleb Brzezinski, Ting-Wei Hsu, J. E. Sipe, and Ralph Jimenez&lt;br/&gt;&lt;span&gt;We report the results of two-photon-excited fluorescence (TPEF) measurements of the $5{S}_{1/2}→5{D}_{5/2}$ transition of ${}^{85}$Rb and ${}^{87}$Rb cooled in a magneto-optical trap (MOT). We observe TPEF at excitation powers as low as 1 $μ$W or fluxes as low as ${2.98}_{−0.94}^{+1.37}×{10}^{18}\ph…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Tue Jul 07, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Alan McLean, Christian Drago, Daniel Podos, Chengyi Luo, Caleb Brzezinski, Ting-Wei Hsu, J. E. Sipe, and Ralph Jimenez</p><span>We report the results of two-photon-excited fluorescence (TPEF) measurements of the <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mn>5</mn><msub><mstyle mathvariant="normal"><mi>S</mi></mstyle><mrow><mn>1</mn><mi>/</mi><mn>2</mn></mrow></msub><mo>→</mo><mn>5</mn><msub><mstyle mathvariant="normal"><mi>D</mi></mstyle><mrow><mn>5</mn><mi>/</mi><mn>2</mn></mrow></msub></mrow></math> transition of <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><msup><mi></mi><mn>85</mn></msup></math>Rb and <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><msup><mi></mi><mn>87</mn></msup></math>Rb cooled in a magneto-optical trap (MOT). We observe TPEF at excitation powers as low as 1 <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mi>μ</mi></math>W or fluxes as low as <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><msubsup><mn>2.98</mn><mrow><mo>−</mo><mn>0.94</mn></mrow><mrow><mo>+</mo><mn>1.37</mn></mrow></msubsup><mo>×</mo><msup><mn>10</mn><mn>18</mn></msup><mspace width="0.222em"></mspace><mtext mathvariant="normal">photons</mtext><mspace width="0.167em"></mspace><msup><mtext mathvariant="normal">cm</mtext><mrow><mo>−</mo><mn>2</mn></mrow></msup><mspace width="0.167em"></mspace><msup><mtext mathvariant="normal">s</mtext><mrow><mo>−</mo><mn>1</mn></mrow></msup></mrow></math> (<math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><msup><mi></mi><mn>85</mn></msup></math>Rb) and <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><msubsup><mn>3.31</mn><mrow><mo>−</mo><mn>1.33</mn></mrow><mrow><mo>+</mo><mn>2.21</mn></mrow></msubsup><mo>×</mo><msup><mn>10</mn><mn>18</mn></msup><mspace width="0.222em"></mspace><mtext mathvariant="normal">…</mtext></mrow></math></span><br/><p>[Phys. Rev. Applied] Published Tue Jul 07, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Two-photon-excited fluorescence spectroscopy of Rb atoms in a magneto-optical trap&lt;/span&gt;</dc:title>
    <dc:creator>Alan McLean, Christian Drago, Daniel Podos, Chengyi Luo, Caleb Brzezinski, Ting-Wei Hsu, J. E. Sipe, and Ralph Jimenez</dc:creator>
    <dc:date>2026-07-07T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/c8gq-zp19</dc:identifier>
    <prism:doi>10.1103/c8gq-zp19</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-07-07T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/59075A65A2018a0f054341957bed90857e0f065f7</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/1a073A34W33E451790ba61d71cd5285f875b809c2">
    <title>&lt;span&gt;Fast optical data transfer into a Josephson-junction array&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/1a073A34W33E451790ba61d71cd5285f875b809c2</link>
    <description>Author(s): K. Kohopää, J. Nissilä, E. Mykkänen, P. Selvasundaram, T. Fordell, K. Langi, E. T. Mannila, S. Kafanov, S. Ahopelto, H. Systä, M. Ribeiro, P. Sethi, M. Kiviranta, R. Loreto, J. -W. Lee, T. Rantanen, V. Vesterinen, O. Kieler, M. Bieler, J. Govenius, J. Senior, and A. Kemppinen&lt;br/&gt;&lt;span&gt;We employ externally shunted Nb–AlO${}_{x}$–Nb Josephson junctions for demonstrating a circuit that is suitable for an optically driven Josephson Arbitrary Waveform Synthesizer (JAWS). This technology enables overdamped junctions with characteristic frequencies above 100 GHz and critical currents of…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Tue Jun 30, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): K. Kohopää, J. Nissilä, E. Mykkänen, P. Selvasundaram, T. Fordell, K. Langi, E. T. Mannila, S. Kafanov, S. Ahopelto, H. Systä, M. Ribeiro, P. Sethi, M. Kiviranta, R. Loreto, J. -W. Lee, T. Rantanen, V. Vesterinen, O. Kieler, M. Bieler, J. Govenius, J. Senior, and A. Kemppinen</p><span>We employ externally shunted Nb–AlO<math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><msub><mi></mi><mi>x</mi></msub></math>–Nb Josephson junctions for demonstrating a circuit that is suitable for an optically driven Josephson Arbitrary Waveform Synthesizer (JAWS). This technology enables overdamped junctions with characteristic frequencies above 100 GHz and critical currents of the or…</span><br/><p>[Phys. Rev. Applied] Published Tue Jun 30, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Fast optical data transfer into a Josephson-junction array&lt;/span&gt;</dc:title>
    <dc:creator>K. Kohopää, J. Nissilä, E. Mykkänen, P. Selvasundaram, T. Fordell, K. Langi, E. T. Mannila, S. Kafanov, S. Ahopelto, H. Systä, M. Ribeiro, P. Sethi, M. Kiviranta, R. Loreto, J. -W. Lee, T. Rantanen, V. Vesterinen, O. Kieler, M. Bieler, J. Govenius, J. Senior, and A. Kemppinen</dc:creator>
    <dc:date>2026-06-30T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/tql5-gt9g</dc:identifier>
    <prism:doi>10.1103/tql5-gt9g</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-06-30T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/1a073A34W33E451790ba61d71cd5285f875b809c2</prism:url>
    <dc:subject>Letters</dc:subject>
    <prism:section>Letters</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/e6073A6cA761e001f6a80561cd795da61ef394a2a">
    <title>&lt;span&gt;Spectator-transition crosstalk in a spin-$\frac{3}{2}$ silicon-vacancy qudit in silicon carbide revealed by broadband Ramsey interferometry&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/e6073A6cA761e001f6a80561cd795da61ef394a2a</link>
    <description>Author(s): Jun-Jae Choi, Seung-Jae Hwang, Seoyoung Paik, Juhwan Kim, Jawad UI-Hassan, Nguyen Tien Son, Hiroshi Abe, Takeshi Ohshima, Jaekwon Suk, Hyeon-Ho Jeong, Dong-Hee Kim, and Sang-Yun Lee&lt;br/&gt;&lt;span&gt;Color‑center spins in 4H‑SiC offer a rare combination of wafer‑scale materials maturity with long spin coherence and chip‑level photonics, making them promising building blocks for scalable quantum technologies. In particular, the silicon vacancy hosts an S = 3/2 ground state, a native qudit that en…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Tue Jun 23, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Jun-Jae Choi, Seung-Jae Hwang, Seoyoung Paik, Juhwan Kim, Jawad UI-Hassan, Nguyen Tien Son, Hiroshi Abe, Takeshi Ohshima, Jaekwon Suk, Hyeon-Ho Jeong, Dong-Hee Kim, and Sang-Yun Lee</p><span>Color‑center spins in 4H‑SiC offer a rare combination of wafer‑scale materials maturity with long spin coherence and chip‑level photonics, making them promising building blocks for scalable quantum technologies. In particular, the silicon vacancy hosts an S = 3/2 ground state, a native qudit that en…</span><br/><p>[Phys. Rev. Applied] Published Tue Jun 23, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Spectator-transition crosstalk in a spin-$\frac{3}{2}$ silicon-vacancy qudit in silicon carbide revealed by broadband Ramsey interferometry&lt;/span&gt;</dc:title>
    <dc:creator>Jun-Jae Choi, Seung-Jae Hwang, Seoyoung Paik, Juhwan Kim, Jawad UI-Hassan, Nguyen Tien Son, Hiroshi Abe, Takeshi Ohshima, Jaekwon Suk, Hyeon-Ho Jeong, Dong-Hee Kim, and Sang-Yun Lee</dc:creator>
    <dc:date>2026-06-23T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/qjsy-1m59</dc:identifier>
    <prism:doi>10.1103/qjsy-1m59</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-06-23T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/e6073A6cA761e001f6a80561cd795da61ef394a2a</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/17079Y15S272130910be075413779c892042a644d">
    <title>&lt;span&gt;Quantum noise in a squeezed-light-enhanced multiparameter quantum sensor&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/17079Y15S272130910be075413779c892042a644d</link>
    <description>Author(s): Aleksandra Sierant, Diana Méndez-Avalos, Santiago Tabares Giraldo, and Morgan W. Mitchell&lt;br/&gt;&lt;span&gt;We study quantum enhancement of sensitivity using squeezed light in a multi-parameter quantum sensor, the hybrid dc-rf optically pumped magnetometer (hOPM) [Phys. Rev. Applied 21, 034054, (2024)]. Using a single spin ensemble, the hOPM acquires both the dc field strength (scalar magnetometry), and r…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Wed Jun 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Aleksandra Sierant, Diana Méndez-Avalos, Santiago Tabares Giraldo, and Morgan W. Mitchell</p><span>We study quantum enhancement of sensitivity using squeezed light in a multi-parameter quantum sensor, the hybrid dc-rf optically pumped magnetometer (hOPM) [Phys. Rev. Applied 21, 034054, (2024)]. Using a single spin ensemble, the hOPM acquires both the dc field strength (scalar magnetometry), and r…</span><br/><p>[Phys. Rev. Applied] Published Wed Jun 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Quantum noise in a squeezed-light-enhanced multiparameter quantum sensor&lt;/span&gt;</dc:title>
    <dc:creator>Aleksandra Sierant, Diana Méndez-Avalos, Santiago Tabares Giraldo, and Morgan W. Mitchell</dc:creator>
    <dc:date>2026-06-17T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/dx8b-82nj</dc:identifier>
    <prism:doi>10.1103/dx8b-82nj</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-06-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/17079Y15S272130910be075413779c892042a644d</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/02076Af9A7e1750be5e2743179295a1d9927b3f8a">
    <title>&lt;span&gt;Extended depth-of-field magneto-optical Kerr microscopy for applications in three-dimensional nanomagnetism&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/02076Af9A7e1750be5e2743179295a1d9927b3f8a</link>
    <description>Author(s): Le Zhao, Alexander Rabensteiner, Miguel Ángel Cascales-Sandoval, Naëmi Leo, Sabri Koraltan, and Amalio Fernández-Pacheco&lt;br/&gt;&lt;span&gt;High-resolution imaging of magnetic nanostructures is essential for understanding fundamental spin phenomena and designing advanced devices. Recent developments in three-dimensional (3D) nanomagnetism have highlighted the growing need for imaging techniques that can capture magnetic structures acros…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Jun 15, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Le Zhao, Alexander Rabensteiner, Miguel Ángel Cascales-Sandoval, Naëmi Leo, Sabri Koraltan, and Amalio Fernández-Pacheco</p><span>High-resolution imaging of magnetic nanostructures is essential for understanding fundamental spin phenomena and designing advanced devices. Recent developments in three-dimensional (3D) nanomagnetism have highlighted the growing need for imaging techniques that can capture magnetic structures acros…</span><br/><p>[Phys. Rev. Applied] Published Mon Jun 15, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Extended depth-of-field magneto-optical Kerr microscopy for applications in three-dimensional nanomagnetism&lt;/span&gt;</dc:title>
    <dc:creator>Le Zhao, Alexander Rabensteiner, Miguel Ángel Cascales-Sandoval, Naëmi Leo, Sabri Koraltan, and Amalio Fernández-Pacheco</dc:creator>
    <dc:date>2026-06-15T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/jb45-29sy</dc:identifier>
    <prism:doi>10.1103/jb45-29sy</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-06-15T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/02076Af9A7e1750be5e2743179295a1d9927b3f8a</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/10076A75Ae016f08d54e14f1cec3a6c6bb995962e">
    <title>&lt;span&gt;Bridging gaps in Rydberg rf receivers using modulation-transfer bandwidth enhancement&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/10076A75Ae016f08d54e14f1cec3a6c6bb995962e</link>
    <description>Author(s): Mickael Branco, K. V. Adwaith, Gabriel Boccara, Duc-Anh Trinh, Sacha Welinski, Perrine Berger, Fabienne Goldfarb, and Fabien Bretenaker&lt;br/&gt;&lt;span&gt;We optimize theoretically and experimentally the performances of the recently demonstrated modulation transfer protocol [D.-A. Trinh, K. V. Adwaith, M. Branco, A. Rouxel, S. Welinski, P. Berger, F. Goldfarb, and F. Bretenaker, Applied Physics Letters 125, 154001 (2024)] aiming at extending the bandw…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Jun 15, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Mickael Branco, K. V. Adwaith, Gabriel Boccara, Duc-Anh Trinh, Sacha Welinski, Perrine Berger, Fabienne Goldfarb, and Fabien Bretenaker</p><span>We optimize theoretically and experimentally the performances of the recently demonstrated modulation transfer protocol [D.-A. Trinh, K. V. Adwaith, M. Branco, A. Rouxel, S. Welinski, P. Berger, F. Goldfarb, and F. Bretenaker, Applied Physics Letters 125, 154001 (2024)] aiming at extending the bandw…</span><br/><p>[Phys. Rev. Applied] Published Mon Jun 15, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Bridging gaps in Rydberg rf receivers using modulation-transfer bandwidth enhancement&lt;/span&gt;</dc:title>
    <dc:creator>Mickael Branco, K. V. Adwaith, Gabriel Boccara, Duc-Anh Trinh, Sacha Welinski, Perrine Berger, Fabienne Goldfarb, and Fabien Bretenaker</dc:creator>
    <dc:date>2026-06-15T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/y9dt-gs85</dc:identifier>
    <prism:doi>10.1103/y9dt-gs85</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-06-15T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/10076A75Ae016f08d54e14f1cec3a6c6bb995962e</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/2107eA81Se71ac0305110e78cdbf909505fed2ffc">
    <title>&lt;span&gt;Strongly driven transmon as an incoherent noise source&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/2107eA81Se71ac0305110e78cdbf909505fed2ffc</link>
    <description>Author(s): Linda Greggio, Rémi Robin, Mazyar Mirrahimi, and Alexandru Petrescu&lt;br/&gt;&lt;span&gt;Under strong drives, which are becoming necessary for fast high-ﬁdelity operations, transmons can undergo drive-induced state transitions. These transitions can involve dressed states of the driven transmon which are chaotic. Whenever the computational manifold containing the transmon ground and exc…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Fri Jun 12, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Linda Greggio, Rémi Robin, Mazyar Mirrahimi, and Alexandru Petrescu</p><span>Under strong drives, which are becoming necessary for fast high-ﬁdelity operations, transmons can undergo drive-induced state transitions. These transitions can involve dressed states of the driven transmon which are chaotic. Whenever the computational manifold containing the transmon ground and exc…</span><br/><p>[Phys. Rev. Applied] Published Fri Jun 12, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Strongly driven transmon as an incoherent noise source&lt;/span&gt;</dc:title>
    <dc:creator>Linda Greggio, Rémi Robin, Mazyar Mirrahimi, and Alexandru Petrescu</dc:creator>
    <dc:date>2026-06-12T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/1zff-vp5q</dc:identifier>
    <prism:doi>10.1103/1zff-vp5q</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-06-12T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/2107eA81Se71ac0305110e78cdbf909505fed2ffc</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/0207eDaaAec19d01927f1154da54d52ffcddac9ba">
    <title>&lt;span&gt;Coherence limits in interference-based cos(2$φ$) qubits&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/0207eDaaAec19d01927f1154da54d52ffcddac9ba</link>
    <description>Author(s): S. Messelot, A. Leblanc, J. -S. Tettekpoe, F. Lefloch, Q. Ficheux, J. Renard, and É. Dumur&lt;br/&gt;&lt;span&gt;We investigate the coherence properties of parity-protected cos(2φ) qubits based on interferences between two Josephson elements in a superconducting loop. We show that qubit implementations of a cos(2φ) potential using a single loop, such as those employing semiconducting junctions, rhombus circuit…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Wed Jun 10, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): S. Messelot, A. Leblanc, J. -S. Tettekpoe, F. Lefloch, Q. Ficheux, J. Renard, and É. Dumur</p><span>We investigate the coherence properties of parity-protected cos(2φ) qubits based on interferences between two Josephson elements in a superconducting loop. We show that qubit implementations of a cos(2φ) potential using a single loop, such as those employing semiconducting junctions, rhombus circuit…</span><br/><p>[Phys. Rev. Applied] Published Wed Jun 10, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Coherence limits in interference-based cos(2$φ$) qubits&lt;/span&gt;</dc:title>
    <dc:creator>S. Messelot, A. Leblanc, J. -S. Tettekpoe, F. Lefloch, Q. Ficheux, J. Renard, and É. Dumur</dc:creator>
    <dc:date>2026-06-10T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/x4vn-51dj</dc:identifier>
    <prism:doi>10.1103/x4vn-51dj</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-06-10T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/0207eDaaAec19d01927f1154da54d52ffcddac9ba</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/7b07aA47A7b11303c63c3005edd0be9fc9a0112d2">
    <title>&lt;span&gt;Enhanced sensitivity in whispering-gallery-mode sensors through mode hybridization&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/7b07aA47A7b11303c63c3005edd0be9fc9a0112d2</link>
    <description>Author(s): Vivek Gualani, Sofía Sisteré, Josep Salvans-Tort, Maria Riera, Wenle Weng, Josep Sanjuan, and Miquel Nofrarias&lt;br/&gt;&lt;span&gt;Mode interactions in crystalline microresonators play an important role in determining the behavior and characterization of optical resonances, particularly in the presence of multiple wavelengths or polarization-dependent effects. In this study, we investigate the behaviour and error signal respons…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Mon Jun 01, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Vivek Gualani, Sofía Sisteré, Josep Salvans-Tort, Maria Riera, Wenle Weng, Josep Sanjuan, and Miquel Nofrarias</p><span>Mode interactions in crystalline microresonators play an important role in determining the behavior and characterization of optical resonances, particularly in the presence of multiple wavelengths or polarization-dependent effects. In this study, we investigate the behaviour and error signal respons…</span><br/><p>[Phys. Rev. Applied] Published Mon Jun 01, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Enhanced sensitivity in whispering-gallery-mode sensors through mode hybridization&lt;/span&gt;</dc:title>
    <dc:creator>Vivek Gualani, Sofía Sisteré, Josep Salvans-Tort, Maria Riera, Wenle Weng, Josep Sanjuan, and Miquel Nofrarias</dc:creator>
    <dc:date>2026-06-01T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/ndy6-ny7l</dc:identifier>
    <prism:doi>10.1103/ndy6-ny7l</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-06-01T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/7b07aA47A7b11303c63c3005edd0be9fc9a0112d2</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/0f076Ab7U811b009b42956f4ad7d1069b7740b77c">
    <title>&lt;span&gt;Designing lattice proteins with variational quantum algorithms&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/0f076Ab7U811b009b42956f4ad7d1069b7740b77c</link>
    <description>Author(s): Hanna Linn, Lucas Knuthson, Anders Irbäck, Sandipan Mohanty, Laura García-Álvarez, and Göran Johansson&lt;br/&gt;&lt;span&gt;Quantum heuristics have shown promise in solving various optimization problems, including lattice protein folding. Equally relevant is the inverse problem, protein design, where one seeks sequences that fold to a given target structure. The latter problem is often split into two steps: (i) searching…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Thu May 28, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Hanna Linn, Lucas Knuthson, Anders Irbäck, Sandipan Mohanty, Laura García-Álvarez, and Göran Johansson</p><span>Quantum heuristics have shown promise in solving various optimization problems, including lattice protein folding. Equally relevant is the inverse problem, protein design, where one seeks sequences that fold to a given target structure. The latter problem is often split into two steps: (i) searching…</span><br/><p>[Phys. Rev. Applied] Published Thu May 28, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Designing lattice proteins with variational quantum algorithms&lt;/span&gt;</dc:title>
    <dc:creator>Hanna Linn, Lucas Knuthson, Anders Irbäck, Sandipan Mohanty, Laura García-Álvarez, and Göran Johansson</dc:creator>
    <dc:date>2026-05-28T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/kpf7-fx7t</dc:identifier>
    <prism:doi>10.1103/kpf7-fx7t</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-05-28T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/0f076Ab7U811b009b42956f4ad7d1069b7740b77c</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prapplied/accepted/af070Y93Wb119295157135f071f9ec031de416422">
    <title>&lt;span&gt;Quantum nonlinear response of emitter lattices&lt;/span&gt;</title>
    <link>http://journals.aps.org/prapplied/accepted/af070Y93Wb119295157135f071f9ec031de416422</link>
    <description>Author(s): Blas Durá-Azorín, Antonio I. Fernández-Domínguez, and Alejandro Manjavacas&lt;br/&gt;&lt;span&gt;We theoretically investigate the emergence of quantum nonlinearities in the optical response of periodic lattices of two-level quantum emitters coherently driven by a laser. For subwavelength lattice periods, where the system behaves as a quantum metasurface, we find that a resonant incident plane w…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Applied] Published Tue May 26, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Blas Durá-Azorín, Antonio I. Fernández-Domínguez, and Alejandro Manjavacas</p><span>We theoretically investigate the emergence of quantum nonlinearities in the optical response of periodic lattices of two-level quantum emitters coherently driven by a laser. For subwavelength lattice periods, where the system behaves as a quantum metasurface, we find that a resonant incident plane w…</span><br/><p>[Phys. Rev. Applied] Published Tue May 26, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Quantum nonlinear response of emitter lattices&lt;/span&gt;</dc:title>
    <dc:creator>Blas Durá-Azorín, Antonio I. Fernández-Domínguez, and Alejandro Manjavacas</dc:creator>
    <dc:date>2026-05-26T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Applied</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/bq5w-8y18</dc:identifier>
    <prism:doi>10.1103/bq5w-8y18</prism:doi>
    <prism:publicationName>Physical Review Applied</prism:publicationName>
    <prism:publicationDate>2026-05-26T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prapplied/accepted/af070Y93Wb119295157135f071f9ec031de416422</prism:url>
    <dc:subject>Research Articles</dc:subject>
    <prism:section>Research Articles</prism:section>
  </item>
</rdf:RDF>
