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    <link>http://journals.aps.org/prresearch/accepted/7907aY79Haa2580ba9c03713da8444773e3782716</link>
    <description>Author(s): Hyunsuk Hong, Junghyo Jo, and Daniel D. Lee&lt;br/&gt;&lt;span&gt;We introduce an exactly solvable multi-species spherical spin model that unifies noisy Kuramoto dynamics and equilibrium swarmalator systems within a single mean-field framework. The hierarchy of collective ordering in swarmalator systems is elucidated by analytically mapping the full three-dimensio…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Wed Sep 02, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Hyunsuk Hong, Junghyo Jo, and Daniel D. Lee</p><span>We introduce an exactly solvable multi-species spherical spin model that unifies noisy Kuramoto dynamics and equilibrium swarmalator systems within a single mean-field framework. The hierarchy of collective ordering in swarmalator systems is elucidated by analytically mapping the full three-dimensio…</span><br/><p>[Phys. Rev. Research] Published Wed Sep 02, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Hierarchy of collective ordering in swarmalator systems&lt;/span&gt;</dc:title>
    <dc:creator>Hyunsuk Hong, Junghyo Jo, and Daniel D. Lee</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>
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    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-09-02T10:00:00+00:00</prism:publicationDate>
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    <title>&lt;span&gt;Readout failures in superconducting qubits due to TLS-defects in tunnel junctions&lt;/span&gt;</title>
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    <description>Author(s): Jürgen Lisenfeld, Alexander K. Händel, Alexander Bilmes, and Alexey V. Ustinov&lt;br/&gt;&lt;span&gt;Material defects give rise to parasitic two-level systems (TLS) which present a major source of decoherence in superconducting qubits. Here, we study a strongly coupled TLS that resides in the tunnel barrier of transmon qubit. We use multi-photon spectroscopy and TLS strain tuning to explore the ric…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Wed Sep 02, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Jürgen Lisenfeld, Alexander K. Händel, Alexander Bilmes, and Alexey V. Ustinov</p><span>Material defects give rise to parasitic two-level systems (TLS) which present a major source of decoherence in superconducting qubits. Here, we study a strongly coupled TLS that resides in the tunnel barrier of transmon qubit. We use multi-photon spectroscopy and TLS strain tuning to explore the ric…</span><br/><p>[Phys. Rev. Research] Published Wed Sep 02, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Readout failures in superconducting qubits due to TLS-defects in tunnel junctions&lt;/span&gt;</dc:title>
    <dc:creator>Jürgen Lisenfeld, Alexander K. Händel, Alexander Bilmes, and Alexey V. Ustinov</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. Research</dc:source>
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    <title>&lt;span&gt;Direct observation of saturated heat-flux inhibition by magnetic fields in laser-produced plasmas&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/1c075Y7bDfd2710cc2b095053a88bccb23add0160</link>
    <description>Author(s): A. Triantafyllidis, J. -R. Marqùes, P. Loiseau, C. Vlachos, J. J. Santos, J. Béard, J. -M. Lagarrigue, L. Lancia, N. Ozaki, M. Koenig, and B. Albertazzi&lt;br/&gt;&lt;span&gt;We report direct measurements of magnetically inhibited heat transport in an under-dense laser-produced plasma subjected to externally applied magnetic fields of up to $20$ $T$. Spatially and temporally resolved Thomson scattering data show that the peak electron temperature increases by a factor $∼…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Wed Sep 02, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): A. Triantafyllidis, J. -R. Marqùes, P. Loiseau, C. Vlachos, J. J. Santos, J. Béard, J. -M. Lagarrigue, L. Lancia, N. Ozaki, M. Koenig, and B. Albertazzi</p><span>We report direct measurements of magnetically inhibited heat transport in an under-dense laser-produced plasma subjected to externally applied magnetic fields of up to <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mn>20</mn></math> <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mi>T</mi></math>. Spatially and temporally resolved Thomson scattering data show that the peak electron temperature increases by a factor <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mo>∼</mo><mn>1.4</mn><mo>×</mo></mrow></math> …</span><br/><p>[Phys. Rev. Research] Published Wed Sep 02, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Direct observation of saturated heat-flux inhibition by magnetic fields in laser-produced plasmas&lt;/span&gt;</dc:title>
    <dc:creator>A. Triantafyllidis, J. -R. Marqùes, P. Loiseau, C. Vlachos, J. J. Santos, J. Béard, J. -M. Lagarrigue, L. Lancia, N. Ozaki, M. Koenig, and B. Albertazzi</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. Research</dc:source>
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    <dc:identifier>doi:10.1103/2rqf-hq77</dc:identifier>
    <prism:doi>10.1103/2rqf-hq77</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-09-02T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/1c075Y7bDfd2710cc2b095053a88bccb23add0160</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/6307fJ82H3812b0ec1b27c95675e5b14e380b08cb">
    <title>&lt;span&gt;Single-orbital tight-binding model for chiral one-dimensional hybrid organic-inorganic lead halide perovskites&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/6307fJ82H3812b0ec1b27c95675e5b14e380b08cb</link>
    <description>Author(s): Yuya Ominato, Tetsuya Furukawa, Ayumi Ishii, and Tetsuaki Itou&lt;br/&gt;&lt;span&gt;We present a single-orbital tight-binding model for the low-energy electronic states of the chiral one-dimensional hybrid organic-inorganic lead halide perovskite (R/S−PEA)PbI3. The model is constructed from a single effective orbital on each of the four symmetry-related sites in the primitive unit …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Sep 01, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Yuya Ominato, Tetsuya Furukawa, Ayumi Ishii, and Tetsuaki Itou</p><span>We present a single-orbital tight-binding model for the low-energy electronic states of the chiral one-dimensional hybrid organic-inorganic lead halide perovskite (R/S−PEA)PbI3. The model is constructed from a single effective orbital on each of the four symmetry-related sites in the primitive unit …</span><br/><p>[Phys. Rev. Research] Published Tue Sep 01, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Single-orbital tight-binding model for chiral one-dimensional hybrid organic-inorganic lead halide perovskites&lt;/span&gt;</dc:title>
    <dc:creator>Yuya Ominato, Tetsuya Furukawa, Ayumi Ishii, and Tetsuaki Itou</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/vw7v-y192</dc:identifier>
    <prism:doi>10.1103/vw7v-y192</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-09-01T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/6307fJ82H3812b0ec1b27c95675e5b14e380b08cb</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/d5077J0aD7f17b0c42db82e6d883e86308802276c">
    <title>&lt;span&gt;Hierarchical algebraic structure and recursive solution of the Bose-Hubbard model&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/d5077J0aD7f17b0c42db82e6d883e86308802276c</link>
    <description>Author(s): Feng Pan, Lianrong Dai, and Jerry P. Draayer&lt;br/&gt;&lt;span&gt;We uncover a previously unrecognized hierarchical algebraic structure in the Bose–Hubbard model that enables a systematic construction of its spectrum without relying on integrability. We develop a recursive framework in which, within each fixed particle-number sector, the eigenproblem of a p-site s…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Sep 01, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Feng Pan, Lianrong Dai, and Jerry P. Draayer</p><span>We uncover a previously unrecognized hierarchical algebraic structure in the Bose–Hubbard model that enables a systematic construction of its spectrum without relying on integrability. We develop a recursive framework in which, within each fixed particle-number sector, the eigenproblem of a p-site s…</span><br/><p>[Phys. Rev. Research] Published Tue Sep 01, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Hierarchical algebraic structure and recursive solution of the Bose-Hubbard model&lt;/span&gt;</dc:title>
    <dc:creator>Feng Pan, Lianrong Dai, and Jerry P. Draayer</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/psg9-5rv3</dc:identifier>
    <prism:doi>10.1103/psg9-5rv3</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-09-01T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/d5077J0aD7f17b0c42db82e6d883e86308802276c</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/46079JaaGff19d0ed36e89a1a59184d4da4812981">
    <title>&lt;span&gt;High-dimensional inverse design of inertial fusion implosions via differentiable simulation&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/46079JaaGff19d0ed36e89a1a59184d4da4812981</link>
    <description>Author(s): A. J. Crilly, P. Travis, J. P. Brodrick, J. B. Coughlin, and A. S. Joglekar&lt;br/&gt;&lt;span&gt;Inertial confinement fusion implosion design requires simultaneous optimisation of strongly coupled target and driver parameters across high-dimensional design spaces. Existing automated design approaches typically rely on non-differentiable radiation-hydrodynamics codes treated as black boxes, maki…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Sep 01, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): A. J. Crilly, P. Travis, J. P. Brodrick, J. B. Coughlin, and A. S. Joglekar</p><span>Inertial confinement fusion implosion design requires simultaneous optimisation of strongly coupled target and driver parameters across high-dimensional design spaces. Existing automated design approaches typically rely on non-differentiable radiation-hydrodynamics codes treated as black boxes, maki…</span><br/><p>[Phys. Rev. Research] Published Tue Sep 01, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;High-dimensional inverse design of inertial fusion implosions via differentiable simulation&lt;/span&gt;</dc:title>
    <dc:creator>A. J. Crilly, P. Travis, J. P. Brodrick, J. B. Coughlin, and A. S. Joglekar</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/bpms-63ml</dc:identifier>
    <prism:doi>10.1103/bpms-63ml</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-09-01T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/46079JaaGff19d0ed36e89a1a59184d4da4812981</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/b8074JfbF5018d0192bf2039c237fd71ff91ebfe3">
    <title>&lt;span&gt;Loop expansion in polymer field theory: Application to phase separation&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/b8074JfbF5018d0192bf2039c237fd71ff91ebfe3</link>
    <description>Author(s): Kiyoharu Kawana and Kyosuke Adachi&lt;br/&gt;&lt;span&gt;Liquid-liquid phase separation underlies phenomena ranging from protein condensate formation to the phase coexistence of synthetic polymers. Although the random phase approximation (RPA) is widely used to predict such phase behavior, its quantitative accuracy for binodals of polymer solutions, parti…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Sep 01, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Kiyoharu Kawana and Kyosuke Adachi</p><span>Liquid-liquid phase separation underlies phenomena ranging from protein condensate formation to the phase coexistence of synthetic polymers. Although the random phase approximation (RPA) is widely used to predict such phase behavior, its quantitative accuracy for binodals of polymer solutions, parti…</span><br/><p>[Phys. Rev. Research] Published Tue Sep 01, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Loop expansion in polymer field theory: Application to phase separation&lt;/span&gt;</dc:title>
    <dc:creator>Kiyoharu Kawana and Kyosuke Adachi</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/pz3r-hjkc</dc:identifier>
    <prism:doi>10.1103/pz3r-hjkc</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-09-01T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/b8074JfbF5018d0192bf2039c237fd71ff91ebfe3</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/35073Y6bS702530303b592f51d66e94f39ba3a0d8">
    <title>&lt;span&gt;Dynamics creation through neural dynamical transfer learning&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/35073Y6bS702530303b592f51d66e94f39ba3a0d8</link>
    <description>Author(s): He Ma, Qiyang Ge, Yu Meng, Celso Grebogi, and Wei Lin&lt;br/&gt;&lt;span&gt;Data-driven machine learning has established a robust foundation for reconstructing nonlinear dynamical systems from observations, primarily for the purposes of forecasting and control. However, most existing efforts focus on recovering specific observed dynamics rather than the generative synthesis…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Sep 01, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): He Ma, Qiyang Ge, Yu Meng, Celso Grebogi, and Wei Lin</p><span>Data-driven machine learning has established a robust foundation for reconstructing nonlinear dynamical systems from observations, primarily for the purposes of forecasting and control. However, most existing efforts focus on recovering specific observed dynamics rather than the generative synthesis…</span><br/><p>[Phys. Rev. Research] Published Tue Sep 01, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Dynamics creation through neural dynamical transfer learning&lt;/span&gt;</dc:title>
    <dc:creator>He Ma, Qiyang Ge, Yu Meng, Celso Grebogi, and Wei Lin</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/ccgv-hgjb</dc:identifier>
    <prism:doi>10.1103/ccgv-hgjb</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-09-01T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/35073Y6bS702530303b592f51d66e94f39ba3a0d8</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/6907cI3cZb015009300257d1fe4b97e05bebf14c9">
    <title>&lt;span&gt;Understanding temperature tuning in energy-based models&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/6907cI3cZb015009300257d1fe4b97e05bebf14c9</link>
    <description>Author(s): Peter W Fields, Vudtiwat Ngampruetikorn, DJ Schwab, and SE Palmer&lt;br/&gt;&lt;span&gt;Generative models of complex systems often require post-hoc parameter adjustments to produce useful outputs. For example, energy-based models for protein design are sampled at an artificially low &lt;code&gt;temperature'' to generate novel, functional sequences. This temperature tuning is a common yet poorly un…&lt;/code&gt;&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Sep 01, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Peter W Fields, Vudtiwat Ngampruetikorn, DJ Schwab, and SE Palmer</p><span>Generative models of complex systems often require post-hoc parameter adjustments to produce useful outputs. For example, energy-based models for protein design are sampled at an artificially low <code>temperature'' to generate novel, functional sequences. This temperature tuning is a common yet poorly un…</code></span><br/><p>[Phys. Rev. Research] Published Tue Sep 01, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Understanding temperature tuning in energy-based models&lt;/span&gt;</dc:title>
    <dc:creator>Peter W Fields, Vudtiwat Ngampruetikorn, DJ Schwab, and SE Palmer</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/g8cm-7ps7</dc:identifier>
    <prism:doi>10.1103/g8cm-7ps7</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-09-01T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/6907cI3cZb015009300257d1fe4b97e05bebf14c9</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/bf074Y93Q012010182c199c8444064c75e44d551b">
    <title>&lt;span&gt;Unified framework for photon dynamics in non-Euclidean polygonal cavities&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/bf074Y93Q012010182c199c8444064c75e44d551b</link>
    <description>Author(s): Yechun Ding, Yongsheng Wang, Peng Li, Yaxin Guo, Yanpeng Zhang, Feng Yun, Ce Shang, Run-Qiu Yang, Caigui Jiang, and Feng Li&lt;br/&gt;&lt;span&gt;We extend the concept of polygonal resonators to curved spaces through a unified model governed by a joint curvature parameter. This framework uncovers unique dynamics, including dissipative states defined by hyperbolic fixed points that yield phase diagrams in the curvature space. We find that stab…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Sep 01, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Yechun Ding, Yongsheng Wang, Peng Li, Yaxin Guo, Yanpeng Zhang, Feng Yun, Ce Shang, Run-Qiu Yang, Caigui Jiang, and Feng Li</p><span>We extend the concept of polygonal resonators to curved spaces through a unified model governed by a joint curvature parameter. This framework uncovers unique dynamics, including dissipative states defined by hyperbolic fixed points that yield phase diagrams in the curvature space. We find that stab…</span><br/><p>[Phys. Rev. Research] Published Tue Sep 01, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Unified framework for photon dynamics in non-Euclidean polygonal cavities&lt;/span&gt;</dc:title>
    <dc:creator>Yechun Ding, Yongsheng Wang, Peng Li, Yaxin Guo, Yanpeng Zhang, Feng Yun, Ce Shang, Run-Qiu Yang, Caigui Jiang, and Feng Li</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/hmxc-ltdl</dc:identifier>
    <prism:doi>10.1103/hmxc-ltdl</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-09-01T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/bf074Y93Q012010182c199c8444064c75e44d551b</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/e707fD5aE4218903c2f5088052c5bf50b448187fb">
    <title>&lt;span&gt;Spin qubit leapfrogging: Dynamics of shuttling electrons on top of another&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/e707fD5aE4218903c2f5088052c5bf50b448187fb</link>
    <description>Author(s): Nicklas Meineke and Guido Burkard&lt;br/&gt;&lt;span&gt;Spin shuttling has crystalized as a powerful and promising tool for establishing intermediate-range connectivity in semiconductor spin-qubit devices. Although experimental demonstrations have performed exceptionally well on different materials platforms, the question of how to handle areas of low va…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Sep 01, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Nicklas Meineke and Guido Burkard</p><span>Spin shuttling has crystalized as a powerful and promising tool for establishing intermediate-range connectivity in semiconductor spin-qubit devices. Although experimental demonstrations have performed exceptionally well on different materials platforms, the question of how to handle areas of low va…</span><br/><p>[Phys. Rev. Research] Published Tue Sep 01, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Spin qubit leapfrogging: Dynamics of shuttling electrons on top of another&lt;/span&gt;</dc:title>
    <dc:creator>Nicklas Meineke and Guido Burkard</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/l1vq-9zhr</dc:identifier>
    <prism:doi>10.1103/l1vq-9zhr</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-09-01T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/e707fD5aE4218903c2f5088052c5bf50b448187fb</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/9a07dJabFcc1860c32983fe1beca4df08e8fcbd0c">
    <title>&lt;span&gt;Inherent altermagnetism in minimal tight-binding models of regular hyperbolic lattices&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/9a07dJabFcc1860c32983fe1beca4df08e8fcbd0c</link>
    <description>Author(s): Eric Petermann, Kristian Mæland, Haye Hinrichsen, and Björn Trauzettel&lt;br/&gt;&lt;span&gt;Altermagnets are a novel class of magnetic systems characterized by their momentum-dependent spin splitting without net magnetization. In this work, we extend established Euclidean tight-binding models of altermagnets to regular hyperbolic lattices in two spatial dimensions defined on a discretized …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Sep 01, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Eric Petermann, Kristian Mæland, Haye Hinrichsen, and Björn Trauzettel</p><span>Altermagnets are a novel class of magnetic systems characterized by their momentum-dependent spin splitting without net magnetization. In this work, we extend established Euclidean tight-binding models of altermagnets to regular hyperbolic lattices in two spatial dimensions defined on a discretized …</span><br/><p>[Phys. Rev. Research] Published Tue Sep 01, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Inherent altermagnetism in minimal tight-binding models of regular hyperbolic lattices&lt;/span&gt;</dc:title>
    <dc:creator>Eric Petermann, Kristian Mæland, Haye Hinrichsen, and Björn Trauzettel</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/h2ys-c3rz</dc:identifier>
    <prism:doi>10.1103/h2ys-c3rz</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-09-01T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/9a07dJabFcc1860c32983fe1beca4df08e8fcbd0c</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/9c07eYf0Z4425308f05a9eb56a8c9652448a74fbe">
    <title>&lt;span&gt;Symmetries of anisotropic spin interaction models&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/9c07eYf0Z4425308f05a9eb56a8c9652448a74fbe</link>
    <description>Author(s): Arist Zhenyuan Yang&lt;br/&gt;&lt;span&gt;We show that anisotropic spin interactions do not merely break spin-space group (SSG) symmetries, but instead them through cohomology invariants, yielding symmetry classes beyond subgroups of ( O(3)(^3) ). This requires redefining the spin-only group ( _0 ) in terms of proper spin rotations. Based o…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Sep 01, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Arist Zhenyuan Yang</p><span>We show that anisotropic spin interactions do not merely break spin-space group (SSG) symmetries, but instead them through cohomology invariants, yielding symmetry classes beyond subgroups of ( O(3)(^3) ). This requires redefining the spin-only group ( _0 ) in terms of proper spin rotations. Based o…</span><br/><p>[Phys. Rev. Research] Published Tue Sep 01, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Symmetries of anisotropic spin interaction models&lt;/span&gt;</dc:title>
    <dc:creator>Arist Zhenyuan Yang</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/ywpn-pt91</dc:identifier>
    <prism:doi>10.1103/ywpn-pt91</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-09-01T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/9c07eYf0Z4425308f05a9eb56a8c9652448a74fbe</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/b1078YefE392870596333f985330a9360830b8d9c">
    <title>&lt;span&gt;Robust metal-insulator transition despite surface dead-layer growth in sub-10-nm Cr-doped V${}_{2}$O${}_{3}$ nanocrystals&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/b1078YefE392870596333f985330a9360830b8d9c</link>
    <description>Author(s): Yoichi Ishiwata, Ichidai Harada, Masaki Imamura, Kazutoshi Takahashi, Hirofumi Ishii, Masato Yoshimura, Nozomu Hiraoka, Yuji Inagaki, Kenta Akashi, Tatsuya Kawae, Tetsuya Kida, and Masashi Nantoh&lt;br/&gt;&lt;span&gt;We investigated the size dependence of the metal-insulator transition (MIT) in Cr-doped V${}_{2}$O${}_{3}$ nanocrystals by photoemission spectroscopy using complementary probing depths, together with magnetic susceptibility measurements. Photoemission spectra show that MIT signatures persist down to…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Sep 01, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Yoichi Ishiwata, Ichidai Harada, Masaki Imamura, Kazutoshi Takahashi, Hirofumi Ishii, Masato Yoshimura, Nozomu Hiraoka, Yuji Inagaki, Kenta Akashi, Tatsuya Kawae, Tetsuya Kida, and Masashi Nantoh</p><span>We investigated the size dependence of the metal-insulator transition (MIT) in Cr-doped V<math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><msub><mi></mi><mn>2</mn></msub></math>O<math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><msub><mi></mi><mn>3</mn></msub></math> nanocrystals by photoemission spectroscopy using complementary probing depths, together with magnetic susceptibility measurements. Photoemission spectra show that MIT signatures persist down to an average pa…</span><br/><p>[Phys. Rev. Research] Published Tue Sep 01, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Robust metal-insulator transition despite surface dead-layer growth in sub-10-nm Cr-doped V${}_{2}$O${}_{3}$ nanocrystals&lt;/span&gt;</dc:title>
    <dc:creator>Yoichi Ishiwata, Ichidai Harada, Masaki Imamura, Kazutoshi Takahashi, Hirofumi Ishii, Masato Yoshimura, Nozomu Hiraoka, Yuji Inagaki, Kenta Akashi, Tatsuya Kawae, Tetsuya Kida, and Masashi Nantoh</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/9g6w-r9sc</dc:identifier>
    <prism:doi>10.1103/9g6w-r9sc</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-09-01T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/b1078YefE392870596333f985330a9360830b8d9c</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/f807cY29D372dc02552f2c01e17d7bd8688fc6cc6">
    <title>&lt;span&gt;Operator dynamics in $k$-Markov random circuits&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/f807cY29D372dc02552f2c01e17d7bd8688fc6cc6</link>
    <description>Author(s): Unnati Akhouri, Pei-Jun Huang, Elliott Rose, and Sarah Shandera&lt;br/&gt;&lt;span&gt;We demonstrate that $k$-Markov sequences of unitary gates provide low-cost handles to manipulate the rate and structure of information spreading compared to traditional random, 0-Markov, circuits. For SWAP gates and brickwork circuits, we use graph cover time to demonstrate how $k$-Markov processes …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Mon Aug 31, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Unnati Akhouri, Pei-Jun Huang, Elliott Rose, and Sarah Shandera</p><span>We demonstrate that <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mi>k</mi></math>-Markov sequences of unitary gates provide low-cost handles to manipulate the rate and structure of information spreading compared to traditional random, 0-Markov, circuits. For SWAP gates and brickwork circuits, we use graph cover time to demonstrate how <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mi>k</mi></math>-Markov processes can …</span><br/><p>[Phys. Rev. Research] Published Mon Aug 31, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Operator dynamics in $k$-Markov random circuits&lt;/span&gt;</dc:title>
    <dc:creator>Unnati Akhouri, Pei-Jun Huang, Elliott Rose, and Sarah Shandera</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/p2cj-1kkl</dc:identifier>
    <prism:doi>10.1103/p2cj-1kkl</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-31T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/f807cY29D372dc02552f2c01e17d7bd8688fc6cc6</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/a8070YffAf11488f37170099cc9201e7aefad2c77">
    <title>&lt;span&gt;Finite-size clocks in quantum field theory and the twin paradox&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/a8070YffAf11488f37170099cc9201e7aefad2c77</link>
    <description>Author(s): Matheus H. Zambianco and T. Rick Perche&lt;br/&gt;&lt;span&gt;Vacuum fluctuations in quantum field theory impose fundamental limitations on our ability to measure time at arbitrarily short scales. To investigate the impact of universal quantum field theory effects on observer-dependent time measurements, we introduce a clock model based on the vacuum decay pro…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Mon Aug 31, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Matheus H. Zambianco and T. Rick Perche</p><span>Vacuum fluctuations in quantum field theory impose fundamental limitations on our ability to measure time at arbitrarily short scales. To investigate the impact of universal quantum field theory effects on observer-dependent time measurements, we introduce a clock model based on the vacuum decay pro…</span><br/><p>[Phys. Rev. Research] Published Mon Aug 31, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Finite-size clocks in quantum field theory and the twin paradox&lt;/span&gt;</dc:title>
    <dc:creator>Matheus H. Zambianco and T. Rick Perche</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/5yl5-4kdk</dc:identifier>
    <prism:doi>10.1103/5yl5-4kdk</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-31T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/a8070YffAf11488f37170099cc9201e7aefad2c77</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/8707aD0dEa812f05824307297de2c89db4a58f528">
    <title>&lt;span&gt;From coupled ${ℤ}_{3}$ Rabi models to the ${ℤ}_{3}$ Potts model&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/8707aD0dEa812f05824307297de2c89db4a58f528</link>
    <description>Author(s): Anatoliy I. Lotkov, Valerii K. Kozin, Denis V. Kurlov, Jelena Klinovaja, and Daniel Loss&lt;br/&gt;&lt;span&gt;We study ${ℤ}_{3}$-symmetric Rabi model that describes a three-level system coupled to two bosonic modes. We derive a mapping of the two-mode ${ℤ}_{3}$ Rabi model onto a qubit-boson ring. This mapping allows us to formulate a realistic implementation of the ${ℤ}_{3}$ Rabi model based on superconduct…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Mon Aug 31, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Anatoliy I. Lotkov, Valerii K. Kozin, Denis V. Kurlov, Jelena Klinovaja, and Daniel Loss</p><span>We study <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><msub><mstyle mathvariant="double-struck"><mi>ℤ</mi></mstyle><mn>3</mn></msub></math>-symmetric Rabi model that describes a three-level system coupled to two bosonic modes. We derive a mapping of the two-mode <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><msub><mstyle mathvariant="double-struck"><mi>ℤ</mi></mstyle><mn>3</mn></msub></math> Rabi model onto a qubit-boson ring. This mapping allows us to formulate a realistic implementation of the <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><msub><mstyle mathvariant="double-struck"><mi>ℤ</mi></mstyle><mn>3</mn></msub></math> Rabi model based on superconducting qubits. It also p…</span><br/><p>[Phys. Rev. Research] Published Mon Aug 31, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;From coupled ${ℤ}_{3}$ Rabi models to the ${ℤ}_{3}$ Potts model&lt;/span&gt;</dc:title>
    <dc:creator>Anatoliy I. Lotkov, Valerii K. Kozin, Denis V. Kurlov, Jelena Klinovaja, and Daniel Loss</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/ybt7-yh9v</dc:identifier>
    <prism:doi>10.1103/ybt7-yh9v</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-31T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/8707aD0dEa812f05824307297de2c89db4a58f528</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/4307eYefC151379b30701b78a336ca5711533924f">
    <title>&lt;span&gt;Modulated anti-ferroelectric smectic phases with orthogonal and tilted structures&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/4307eYefC151379b30701b78a336ca5711533924f</link>
    <description>Author(s): Jordan Hobbs, Calum J. Gibb, William C. Ogle, Peter Medle Rupnik, Natan Osterman, Nerea Sebastián, Alenka Mertelj, and Richard. J. Mandle&lt;br/&gt;&lt;span&gt;The discovery of the ferroelectric nematic phase has brought with it a plethora of new polar liquid crystalline phases. One in particular is the anti-ferroelectric smectic A SmAAF phase. In this letter we show via observation and analysis of satellite peaks in the X-ray scattering pattern that the s…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Mon Aug 31, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Jordan Hobbs, Calum J. Gibb, William C. Ogle, Peter Medle Rupnik, Natan Osterman, Nerea Sebastián, Alenka Mertelj, and Richard. J. Mandle</p><span>The discovery of the ferroelectric nematic phase has brought with it a plethora of new polar liquid crystalline phases. One in particular is the anti-ferroelectric smectic A SmAAF phase. In this letter we show via observation and analysis of satellite peaks in the X-ray scattering pattern that the s…</span><br/><p>[Phys. Rev. Research] Published Mon Aug 31, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Modulated anti-ferroelectric smectic phases with orthogonal and tilted structures&lt;/span&gt;</dc:title>
    <dc:creator>Jordan Hobbs, Calum J. Gibb, William C. Ogle, Peter Medle Rupnik, Natan Osterman, Nerea Sebastián, Alenka Mertelj, and Richard. J. Mandle</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/5l14-qxxt</dc:identifier>
    <prism:doi>10.1103/5l14-qxxt</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-31T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/4307eYefC151379b30701b78a336ca5711533924f</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/4b07aJ0fD891ee0ab2ee5fd4d4b9f43a5f4834b16">
    <title>&lt;span&gt;Steady-state multiparticle entanglement via dissipative engineering in waveguide QED&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/4b07aJ0fD891ee0ab2ee5fd4d4b9f43a5f4834b16</link>
    <description>Author(s): Joan Alba, Jacob Thornfeldt Hansen, Jean-Baptiste S. Béguin, and Anders S. Sørensen&lt;br/&gt;&lt;span&gt;We propose a simple scalable scheme for the dissipative generation of entangled states of multiple emitters coupled to a waveguide. Our approach exploits collective interactions arising from the formation of subradiant and superradiant excited states, combined with the quantum Zeno effect. We show t…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Mon Aug 31, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Joan Alba, Jacob Thornfeldt Hansen, Jean-Baptiste S. Béguin, and Anders S. Sørensen</p><span>We propose a simple scalable scheme for the dissipative generation of entangled states of multiple emitters coupled to a waveguide. Our approach exploits collective interactions arising from the formation of subradiant and superradiant excited states, combined with the quantum Zeno effect. We show t…</span><br/><p>[Phys. Rev. Research] Published Mon Aug 31, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Steady-state multiparticle entanglement via dissipative engineering in waveguide QED&lt;/span&gt;</dc:title>
    <dc:creator>Joan Alba, Jacob Thornfeldt Hansen, Jean-Baptiste S. Béguin, and Anders S. Sørensen</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/npwb-yqln</dc:identifier>
    <prism:doi>10.1103/npwb-yqln</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-31T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/4b07aJ0fD891ee0ab2ee5fd4d4b9f43a5f4834b16</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/aa072Y5cU3c15e9085a56128a094a146b3dd33868">
    <title>&lt;span&gt;Towards fault-tolerant quantum memory with universal continuous-variable gates&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/aa072Y5cU3c15e9085a56128a094a146b3dd33868</link>
    <description>Author(s): Sheron Blair, Francesco Arzani, Giulia Ferrini, and Alessandro Ferraro&lt;br/&gt;&lt;span&gt;Continuous-variable (CV) systems have shown remarkable potential for quantum computation, particularly excelling in scalability and holding great promise for error correction through bosonic encoding. Within this framework, the foundational notion of computational universality was introduced in [Phy…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Mon Aug 31, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Sheron Blair, Francesco Arzani, Giulia Ferrini, and Alessandro Ferraro</p><span>Continuous-variable (CV) systems have shown remarkable potential for quantum computation, particularly excelling in scalability and holding great promise for error correction through bosonic encoding. Within this framework, the foundational notion of computational universality was introduced in [Phy…</span><br/><p>[Phys. Rev. Research] Published Mon Aug 31, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Towards fault-tolerant quantum memory with universal continuous-variable gates&lt;/span&gt;</dc:title>
    <dc:creator>Sheron Blair, Francesco Arzani, Giulia Ferrini, and Alessandro Ferraro</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/45v3-h82q</dc:identifier>
    <prism:doi>10.1103/45v3-h82q</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-31T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/aa072Y5cU3c15e9085a56128a094a146b3dd33868</prism:url>
    <dc:subject>Letters</dc:subject>
    <prism:section>Letters</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/85077Ya5T8c20d11c08491e3161f64c57c3d91966">
    <title>&lt;span&gt;Chiral edge-state signatures of Berry monopole merging and splitting in a bilayer photonic crystal slab with synthetic momentum&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/85077Ya5T8c20d11c08491e3161f64c57c3d91966</link>
    <description>Author(s): Ngoc Duc Le, D. -H. -Minh Nguyen, Dung Xuan Nguyen, Hai Son Nguyen, and Dario Bercioux&lt;br/&gt;&lt;span&gt;Berry monopoles are point degeneracies in parameter space where the Berry curvature emanates radially, analogous to magnetic monopoles. Here, we report the adiabatic merging and splitting of Berry monopoles in a bilayer photonic crystal slab combining one genuine and one synthetic momentum. Two mono…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Sun Aug 30, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Ngoc Duc Le, D. -H. -Minh Nguyen, Dung Xuan Nguyen, Hai Son Nguyen, and Dario Bercioux</p><span>Berry monopoles are point degeneracies in parameter space where the Berry curvature emanates radially, analogous to magnetic monopoles. Here, we report the adiabatic merging and splitting of Berry monopoles in a bilayer photonic crystal slab combining one genuine and one synthetic momentum. Two mono…</span><br/><p>[Phys. Rev. Research] Published Sun Aug 30, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Chiral edge-state signatures of Berry monopole merging and splitting in a bilayer photonic crystal slab with synthetic momentum&lt;/span&gt;</dc:title>
    <dc:creator>Ngoc Duc Le, D. -H. -Minh Nguyen, Dung Xuan Nguyen, Hai Son Nguyen, and Dario Bercioux</dc:creator>
    <dc:date>2026-08-30T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/6ync-5qb9</dc:identifier>
    <prism:doi>10.1103/6ync-5qb9</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-30T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/85077Ya5T8c20d11c08491e3161f64c57c3d91966</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/fc07aK2cF481b71ca1408cc156187881031c073fb">
    <title>&lt;span&gt;Detecting remote synchronization from empirical data of brain networks&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/fc07aK2cF481b71ca1408cc156187881031c073fb</link>
    <description>Author(s): Dehua Chen, Zhiyin Yang, Zhaohua Lin, Guoshen Liang, Wenbin Mao, and Zonghua Liu&lt;br/&gt;&lt;span&gt;The emergence of functional connectivity between distant brain regions that lack a direct structural link remains a long-standing question in neuroscience. Remote synchronization (RS) offers a promising framework for uncovering the underlying mechanisms. So far, RS has been well studied in artificia…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Sun Aug 30, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Dehua Chen, Zhiyin Yang, Zhaohua Lin, Guoshen Liang, Wenbin Mao, and Zonghua Liu</p><span>The emergence of functional connectivity between distant brain regions that lack a direct structural link remains a long-standing question in neuroscience. Remote synchronization (RS) offers a promising framework for uncovering the underlying mechanisms. So far, RS has been well studied in artificia…</span><br/><p>[Phys. Rev. Research] Published Sun Aug 30, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Detecting remote synchronization from empirical data of brain networks&lt;/span&gt;</dc:title>
    <dc:creator>Dehua Chen, Zhiyin Yang, Zhaohua Lin, Guoshen Liang, Wenbin Mao, and Zonghua Liu</dc:creator>
    <dc:date>2026-08-30T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/tmkq-33c4</dc:identifier>
    <prism:doi>10.1103/tmkq-33c4</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-30T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/fc07aK2cF481b71ca1408cc156187881031c073fb</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/47073J22Uf61500c51e67761ed39f73305f276030">
    <title>&lt;span&gt;Membrane bending energy selects for symmetric growth of protein assemblies&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/47073J22Uf61500c51e67761ed39f73305f276030</link>
    <description>Author(s): Yue Moon Ying and Margaret E. Johnson&lt;br/&gt;&lt;span&gt;Membrane remodeling into vesicles is essential for processes such as receptor transport and viral budding. In many cases, this remodeling is driven by the assembly of multivalent protein lattices that stochastically grow while coupled to bending the membrane. Here we ask how membrane mechanics can b…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Sat Aug 29, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Yue Moon Ying and Margaret E. Johnson</p><span>Membrane remodeling into vesicles is essential for processes such as receptor transport and viral budding. In many cases, this remodeling is driven by the assembly of multivalent protein lattices that stochastically grow while coupled to bending the membrane. Here we ask how membrane mechanics can b…</span><br/><p>[Phys. Rev. Research] Published Sat Aug 29, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Membrane bending energy selects for symmetric growth of protein assemblies&lt;/span&gt;</dc:title>
    <dc:creator>Yue Moon Ying and Margaret E. Johnson</dc:creator>
    <dc:date>2026-08-29T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/tnv7-fjh5</dc:identifier>
    <prism:doi>10.1103/tnv7-fjh5</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-29T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/47073J22Uf61500c51e67761ed39f73305f276030</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/60078J05I9bR921a40d300f4c74d4544c6beaadce">
    <title>&lt;span&gt;Erratum: Trapping potentials and quantum gates for microwave-dressed Rydberg atoms on an atom chip [Phys. Rev. Research &lt;strong&gt;8&lt;/strong&gt;, 013088 (2026)]&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/60078J05I9bR921a40d300f4c74d4544c6beaadce</link>
    <description>Author(s): Iason Tsiamis, Georgios Doultsinos, Andreas F. Tzortzakakis, Manuel Kaiser, Dominik Jakab, Andreas Günther, József Fortágh, and David Petrosyan&lt;br/&gt;[Phys. Rev. Research] Published Fri Aug 28, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Iason Tsiamis, Georgios Doultsinos, Andreas F. Tzortzakakis, Manuel Kaiser, Dominik Jakab, Andreas Günther, József Fortágh, and David Petrosyan</p><p>[Phys. Rev. Research] Published Fri Aug 28, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Erratum: Trapping potentials and quantum gates for microwave-dressed Rydberg atoms on an atom chip [Phys. Rev. Research &lt;strong&gt;8&lt;/strong&gt;, 013088 (2026)]&lt;/span&gt;</dc:title>
    <dc:creator>Iason Tsiamis, Georgios Doultsinos, Andreas F. Tzortzakakis, Manuel Kaiser, Dominik Jakab, Andreas Günther, József Fortágh, and David Petrosyan</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/48w5-zfll</dc:identifier>
    <prism:doi>10.1103/48w5-zfll</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-28T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/60078J05I9bR921a40d300f4c74d4544c6beaadce</prism:url>
    <dc:subject>Errata</dc:subject>
    <prism:section>Errata</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/29075U9bE701bc0490f602664cdb4a3df31bc8268">
    <title>&lt;span&gt;Neural-network quantum states for solving few-body problems: Application to Efimov physics&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/29075U9bE701bc0490f602664cdb4a3df31bc8268</link>
    <description>Author(s): Sora Yokoi, Shimpei Endo, and Hiroki Saito&lt;br/&gt;&lt;span&gt;Neural-network quantum states have been developed as an efficient method for solving quantum many-body problems, not only in lattice systems but also in systems of particles in continuous space. Here, we apply this approach to strongly interacting few-body problems in continuous space at unitarity: …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Fri Aug 28, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Sora Yokoi, Shimpei Endo, and Hiroki Saito</p><span>Neural-network quantum states have been developed as an efficient method for solving quantum many-body problems, not only in lattice systems but also in systems of particles in continuous space. Here, we apply this approach to strongly interacting few-body problems in continuous space at unitarity: …</span><br/><p>[Phys. Rev. Research] Published Fri Aug 28, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Neural-network quantum states for solving few-body problems: Application to Efimov physics&lt;/span&gt;</dc:title>
    <dc:creator>Sora Yokoi, Shimpei Endo, and Hiroki Saito</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/31mv-7tz7</dc:identifier>
    <prism:doi>10.1103/31mv-7tz7</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-28T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/29075U9bE701bc0490f602664cdb4a3df31bc8268</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/1c07eYd0Xbd2d30f71592107baa07e40c99c25e7a">
    <title>&lt;span&gt;Active transport as a mechanism of microphase selection in biomolecular condensates&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/1c07eYd0Xbd2d30f71592107baa07e40c99c25e7a</link>
    <description>Author(s): Le Qiao, Peter Gispert, Lukas S. Stelzl, and Friederike Schmid&lt;br/&gt;&lt;span&gt;The size and organization of biomolecular condensates formed by liquid-liquid phase separation (LLPS) are set by multiple cellular mechanisms that are not yet fully understood. Here we identify a transport-driven mechanism: stochastic binding of phase-separating proteins to cytoskeletal motor protei…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 27, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Le Qiao, Peter Gispert, Lukas S. Stelzl, and Friederike Schmid</p><span>The size and organization of biomolecular condensates formed by liquid-liquid phase separation (LLPS) are set by multiple cellular mechanisms that are not yet fully understood. Here we identify a transport-driven mechanism: stochastic binding of phase-separating proteins to cytoskeletal motor protei…</span><br/><p>[Phys. Rev. Research] Published Thu Aug 27, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Active transport as a mechanism of microphase selection in biomolecular condensates&lt;/span&gt;</dc:title>
    <dc:creator>Le Qiao, Peter Gispert, Lukas S. Stelzl, and Friederike Schmid</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/wk2j-3bz9</dc:identifier>
    <prism:doi>10.1103/wk2j-3bz9</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-27T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/1c07eYd0Xbd2d30f71592107baa07e40c99c25e7a</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/4307aJ15H381860ee2f028500438ae1ab66c073be">
    <title>&lt;span&gt;Isomorphic property of sheared three-dimensional Yukawa liquidlike fluids&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/4307aJ15H381860ee2f028500438ae1ab66c073be</link>
    <description>Author(s): Dong Huang and Yan Feng&lt;br/&gt;&lt;span&gt;The isomorphic property of strongly coupled three-dimensional (3D) Yukawa liquidlike fluids under steady shear is systematically investigated using nonequilibrium molecular dynamical simulations. It is discovered that, as the shear rate increases substantially, the shear viscosity η and the radial d…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 27, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Dong Huang and Yan Feng</p><span>The isomorphic property of strongly coupled three-dimensional (3D) Yukawa liquidlike fluids under steady shear is systematically investigated using nonequilibrium molecular dynamical simulations. It is discovered that, as the shear rate increases substantially, the shear viscosity η and the radial d…</span><br/><p>[Phys. Rev. Research] Published Thu Aug 27, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Isomorphic property of sheared three-dimensional Yukawa liquidlike fluids&lt;/span&gt;</dc:title>
    <dc:creator>Dong Huang and Yan Feng</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/md4x-9k3g</dc:identifier>
    <prism:doi>10.1103/md4x-9k3g</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-27T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/4307aJ15H381860ee2f028500438ae1ab66c073be</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/2c071K23F0116d1c904d6bc0a1eae02e0b6a182c3">
    <title>&lt;span&gt;Temporal coarse graining as the origin of macroscopic friction in quantum spin chains via data-driven Liouvillian extraction&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/2c071K23F0116d1c904d6bc0a1eae02e0b6a182c3</link>
    <description>Author(s): Seiki Saito&lt;br/&gt;&lt;span&gt;Understanding the emergence of macroscopic irreversible hydrodynamics from the reversible unitary dynamics of isolated quantum many-body systems remains a fundamental challenge. Conventional approaches often force spin density dynamics into purely diffusive models, obscuring the microscopic interpla…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 27, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Seiki Saito</p><span>Understanding the emergence of macroscopic irreversible hydrodynamics from the reversible unitary dynamics of isolated quantum many-body systems remains a fundamental challenge. Conventional approaches often force spin density dynamics into purely diffusive models, obscuring the microscopic interpla…</span><br/><p>[Phys. Rev. Research] Published Thu Aug 27, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Temporal coarse graining as the origin of macroscopic friction in quantum spin chains via data-driven Liouvillian extraction&lt;/span&gt;</dc:title>
    <dc:creator>Seiki Saito</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/41m6-x2m9</dc:identifier>
    <prism:doi>10.1103/41m6-x2m9</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-27T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/2c071K23F0116d1c904d6bc0a1eae02e0b6a182c3</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/38071D87H721280742be44b77ece1ddae4a04cacd">
    <title>&lt;span&gt;Signatures of the circular Unruh effect in electric and magnetic dipole transitions of multilevel atoms&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/38071D87H721280742be44b77ece1ddae4a04cacd</link>
    <description>Author(s): Gregor Janson, Fabio Di Pumpo, Lorenz Thoma, and Maxim A. Efremov&lt;br/&gt;&lt;span&gt;The circular Unruh effect is the excitation of a detector moving along a planar circular trajectory within an electromagnetic vacuum. We demonstrate that the magnetic dipole transitions in an atom, acting as the detector, dominate the electric dipole transitions. Our analysis of both free-space and …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 27, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Gregor Janson, Fabio Di Pumpo, Lorenz Thoma, and Maxim A. Efremov</p><span>The circular Unruh effect is the excitation of a detector moving along a planar circular trajectory within an electromagnetic vacuum. We demonstrate that the magnetic dipole transitions in an atom, acting as the detector, dominate the electric dipole transitions. Our analysis of both free-space and …</span><br/><p>[Phys. Rev. Research] Published Thu Aug 27, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Signatures of the circular Unruh effect in electric and magnetic dipole transitions of multilevel atoms&lt;/span&gt;</dc:title>
    <dc:creator>Gregor Janson, Fabio Di Pumpo, Lorenz Thoma, and Maxim A. Efremov</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/6pz4-wncx</dc:identifier>
    <prism:doi>10.1103/6pz4-wncx</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-27T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/38071D87H721280742be44b77ece1ddae4a04cacd</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/9b07bJ72Gc312b0da3d18285d36cbcd3501b7de00">
    <title>&lt;span&gt;SIETAS model: Swarm-informed triggering, earthquake diffusion, and multiscaling applied to the current Campi Flegrei unrest&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/9b07bJ72Gc312b0da3d18285d36cbcd3501b7de00</link>
    <description>Author(s): Cataldo Godano, Anna Tramelli, Vincenzo Convertito, and Giuseppe Petrillo&lt;br/&gt;&lt;span&gt;Earthquake diffusion is commonly interpreted either as the migration of fluids or as the propagation of triggering cascades within branching processes. In the latter framework, anomalous diffusion emerges naturally from the long-memory kernels of epidemic-type aftershock sequence (ETAS) models. Here…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 27, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Cataldo Godano, Anna Tramelli, Vincenzo Convertito, and Giuseppe Petrillo</p><span>Earthquake diffusion is commonly interpreted either as the migration of fluids or as the propagation of triggering cascades within branching processes. In the latter framework, anomalous diffusion emerges naturally from the long-memory kernels of epidemic-type aftershock sequence (ETAS) models. Here…</span><br/><p>[Phys. Rev. Research] Published Thu Aug 27, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;SIETAS model: Swarm-informed triggering, earthquake diffusion, and multiscaling applied to the current Campi Flegrei unrest&lt;/span&gt;</dc:title>
    <dc:creator>Cataldo Godano, Anna Tramelli, Vincenzo Convertito, and Giuseppe Petrillo</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/wv9d-2wjc</dc:identifier>
    <prism:doi>10.1103/wv9d-2wjc</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-27T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/9b07bJ72Gc312b0da3d18285d36cbcd3501b7de00</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/af072K14A221de1510ea675392e580cbbea6f47de">
    <title>&lt;span&gt;Irreversible behavior and neural activity in the hippocampus&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/af072K14A221de1510ea675392e580cbbea6f47de</link>
    <description>Author(s): Kaiyue Shi and Christopher W. Lynn&lt;br/&gt;&lt;span&gt;In the brain, neural activity undergoes directed flows between states, thus breaking time-reversal symmetry. At the same time, animals also exhibit irreversible flows between behavioral states. Yet it remains unclear whether—and how—irreversibility in the brain relates to irreversibility in behavior…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 27, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Kaiyue Shi and Christopher W. Lynn</p><span>In the brain, neural activity undergoes directed flows between states, thus breaking time-reversal symmetry. At the same time, animals also exhibit irreversible flows between behavioral states. Yet it remains unclear whether—and how—irreversibility in the brain relates to irreversibility in behavior…</span><br/><p>[Phys. Rev. Research] Published Thu Aug 27, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Irreversible behavior and neural activity in the hippocampus&lt;/span&gt;</dc:title>
    <dc:creator>Kaiyue Shi and Christopher W. Lynn</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/s4dl-xg31</dc:identifier>
    <prism:doi>10.1103/s4dl-xg31</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-27T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/af072K14A221de1510ea675392e580cbbea6f47de</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/c007eJ64Eae11f09623c71870b5d7a6931e134bb3">
    <title>&lt;span&gt;First-principles-based description of VO${}_{2}$&lt;br/&gt; using DFT+DMFT with bond-centered orbitals&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/c007eJ64Eae11f09623c71870b5d7a6931e134bb3</link>
    <description>Author(s): Peter Mlkvik, Nicola A. Spaldin, and Claude Ederer&lt;br/&gt;&lt;span&gt;We present a combined density-functional theory and dynamical mean-field theory (DFT+DMFT) study of the full structural phase space of rutile-based vanadium dioxide (VO${}_{2}$), including also the less studied M2 and T phases, using an unconventional bond-centered orbital basis. The use of bond-cen…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 27, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Peter Mlkvik, Nicola A. Spaldin, and Claude Ederer</p><span>We present a combined density-functional theory and dynamical mean-field theory (DFT+DMFT) study of the full structural phase space of rutile-based vanadium dioxide (VO<math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><msub><mi></mi><mn>2</mn></msub></math>), including also the less studied M2 and T phases, using an unconventional bond-centered orbital basis. The use of bond-centered o…</span><br/><p>[Phys. Rev. Research] Published Thu Aug 27, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;First-principles-based description of VO${}_{2}$&lt;br/&gt; using DFT+DMFT with bond-centered orbitals&lt;/span&gt;</dc:title>
    <dc:creator>Peter Mlkvik, Nicola A. Spaldin, and Claude Ederer</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/m911-zsvh</dc:identifier>
    <prism:doi>10.1103/m911-zsvh</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-27T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/c007eJ64Eae11f09623c71870b5d7a6931e134bb3</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/4d070Y2dSd526001542715044f1271a1e6058597e">
    <title>&lt;span&gt;Imaging orbital Rashba induced charge transport anisotropy&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/4d070Y2dSd526001542715044f1271a1e6058597e</link>
    <description>Author(s): Eylon Persky, Xi Wang, Giacomo Sala, Thierry C. van Thiel, Edouard Lesne, Alexander Lau, Mario Cuoco, Marc Gabay, Carmine Ortix, Andrea D. Caviglia, and Beena Kalisky&lt;br/&gt;&lt;span&gt;We reveal a direct orbital contribution to charge transport at the LaAlO3/SrTiO3 interface using scanning SQUID current imaging and global transport. Current patterns reveal conductivity anisotropy at zero field. This anisotropy correlates with the nonlinear Hall effect, pointing to a shared origin.…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 27, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Eylon Persky, Xi Wang, Giacomo Sala, Thierry C. van Thiel, Edouard Lesne, Alexander Lau, Mario Cuoco, Marc Gabay, Carmine Ortix, Andrea D. Caviglia, and Beena Kalisky</p><span>We reveal a direct orbital contribution to charge transport at the LaAlO3/SrTiO3 interface using scanning SQUID current imaging and global transport. Current patterns reveal conductivity anisotropy at zero field. This anisotropy correlates with the nonlinear Hall effect, pointing to a shared origin.…</span><br/><p>[Phys. Rev. Research] Published Thu Aug 27, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Imaging orbital Rashba induced charge transport anisotropy&lt;/span&gt;</dc:title>
    <dc:creator>Eylon Persky, Xi Wang, Giacomo Sala, Thierry C. van Thiel, Edouard Lesne, Alexander Lau, Mario Cuoco, Marc Gabay, Carmine Ortix, Andrea D. Caviglia, and Beena Kalisky</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/py14-kv7p</dc:identifier>
    <prism:doi>10.1103/py14-kv7p</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-27T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/4d070Y2dSd526001542715044f1271a1e6058597e</prism:url>
    <dc:subject>Letters</dc:subject>
    <prism:section>Letters</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/ae076Jc3C831410a22e37f99023fce5dd7a7fa0fb">
    <title>&lt;span&gt;Full band-gap tunability and spin texture engineering in bismuth chalcogen halide van der Waals bilayers&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/ae076Jc3C831410a22e37f99023fce5dd7a7fa0fb</link>
    <description>Author(s): Roberto Cardia, Domenico Ninno, and Giovanni Cantele&lt;br/&gt;&lt;span&gt;We present comprehensive first-principles calculations of the electronic structure of van der Waals bilayers formed by bismuth chalcogenhalide monolayers, with chemical formula BiXY, a family of ternary compounds with X = S, Se, Te and Y = Cl, Br, I. Using density functional theory, we investigate 5…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 27, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Roberto Cardia, Domenico Ninno, and Giovanni Cantele</p><span>We present comprehensive first-principles calculations of the electronic structure of van der Waals bilayers formed by bismuth chalcogenhalide monolayers, with chemical formula BiXY, a family of ternary compounds with X = S, Se, Te and Y = Cl, Br, I. Using density functional theory, we investigate 5…</span><br/><p>[Phys. Rev. Research] Published Thu Aug 27, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Full band-gap tunability and spin texture engineering in bismuth chalcogen halide van der Waals bilayers&lt;/span&gt;</dc:title>
    <dc:creator>Roberto Cardia, Domenico Ninno, and Giovanni Cantele</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/c6sx-vnl3</dc:identifier>
    <prism:doi>10.1103/c6sx-vnl3</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-27T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/ae076Jc3C831410a22e37f99023fce5dd7a7fa0fb</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/1c074Jf4F1a13f0e02074ba97cdf7d24c60c2fc82">
    <title>&lt;span&gt;Near-bandgap harmonic generation in solids from multiple scattering revealed by complex quantum trajectories&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/1c074Jf4F1a13f0e02074ba97cdf7d24c60c2fc82</link>
    <description>Author(s): Xunqin Huo, Xiwang Liu, Shidong Yang, Xiaohong Song, Torsten Meier, and Weifeng Yang&lt;br/&gt;&lt;span&gt;High-harmonic generation in solids enables probing of strong-field electron dynamics in condensed matter and the development of compact ultrafast light sources. Whereas most studies have focused on above-bandgap high-order harmonics, which are usually interpreted through short electron-hole trajecto…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 27, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Xunqin Huo, Xiwang Liu, Shidong Yang, Xiaohong Song, Torsten Meier, and Weifeng Yang</p><span>High-harmonic generation in solids enables probing of strong-field electron dynamics in condensed matter and the development of compact ultrafast light sources. Whereas most studies have focused on above-bandgap high-order harmonics, which are usually interpreted through short electron-hole trajecto…</span><br/><p>[Phys. Rev. Research] Published Thu Aug 27, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Near-bandgap harmonic generation in solids from multiple scattering revealed by complex quantum trajectories&lt;/span&gt;</dc:title>
    <dc:creator>Xunqin Huo, Xiwang Liu, Shidong Yang, Xiaohong Song, Torsten Meier, and Weifeng Yang</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/l939-jglf</dc:identifier>
    <prism:doi>10.1103/l939-jglf</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-27T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/1c074Jf4F1a13f0e02074ba97cdf7d24c60c2fc82</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/aa076Y82Z481a09432a05ce4197a36642e2823e93">
    <title>&lt;span&gt;Anomalous wave-packet dynamics in one-dimensional non-Hermitian lattices&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/aa076Y82Z481a09432a05ce4197a36642e2823e93</link>
    <description>Author(s): Yanyan He and Tomoki Ozawa&lt;br/&gt;&lt;span&gt;Non-Hermitian (NH) systems have attracted great attention due to their exotic phenomena beyond Hermitian domains. Here we systematically study the wave-packet dynamics in general one-dimensional NH lattices and uncover several unexpected phenomena. The group velocity of a wave packet during the time…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Wed Aug 26, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Yanyan He and Tomoki Ozawa</p><span>Non-Hermitian (NH) systems have attracted great attention due to their exotic phenomena beyond Hermitian domains. Here we systematically study the wave-packet dynamics in general one-dimensional NH lattices and uncover several unexpected phenomena. The group velocity of a wave packet during the time…</span><br/><p>[Phys. Rev. Research] Published Wed Aug 26, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Anomalous wave-packet dynamics in one-dimensional non-Hermitian lattices&lt;/span&gt;</dc:title>
    <dc:creator>Yanyan He and Tomoki Ozawa</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/t7qp-wr19</dc:identifier>
    <prism:doi>10.1103/t7qp-wr19</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-26T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/aa076Y82Z481a09432a05ce4197a36642e2823e93</prism:url>
    <dc:subject>Letters</dc:subject>
    <prism:section>Letters</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/5a072DddRfe1470a21f72a78bebf975f5e45bc1e4">
    <title>&lt;span&gt;Max-cut graph-driven quantum circuit design for geometrically frustrated planar spin systems with spin-glass-like energy landscapes&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/5a072DddRfe1470a21f72a78bebf975f5e45bc1e4</link>
    <description>Author(s): Seyed Ehsan Ghasempouri, Gerhard W. Dueck, and Stijn De Baerdemacker&lt;br/&gt;&lt;span&gt;Finding the ground state of geometrically frustrated spin systems is a challenging problem with broad implications. Many hard optimization problems, including NP-complete problems, can be mapped, for instance, to frustrated Ising models, where competing interactions produce rugged, spin-glass–like e…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Wed Aug 26, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Seyed Ehsan Ghasempouri, Gerhard W. Dueck, and Stijn De Baerdemacker</p><span>Finding the ground state of geometrically frustrated spin systems is a challenging problem with broad implications. Many hard optimization problems, including NP-complete problems, can be mapped, for instance, to frustrated Ising models, where competing interactions produce rugged, spin-glass–like e…</span><br/><p>[Phys. Rev. Research] Published Wed Aug 26, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Max-cut graph-driven quantum circuit design for geometrically frustrated planar spin systems with spin-glass-like energy landscapes&lt;/span&gt;</dc:title>
    <dc:creator>Seyed Ehsan Ghasempouri, Gerhard W. Dueck, and Stijn De Baerdemacker</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/prhg-3t42</dc:identifier>
    <prism:doi>10.1103/prhg-3t42</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-26T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/5a072DddRfe1470a21f72a78bebf975f5e45bc1e4</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/bf072K5dFe21111c024e007522a43a9cb09e19024">
    <title>&lt;span&gt;Periodic and quasiperiodic traveling waves in nonlinear lattices with odd elasticity&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/bf072K5dFe21111c024e007522a43a9cb09e19024</link>
    <description>Author(s): Andrus Giraldo, Stefan Ruschel, and Behrooz Yousefzadeh&lt;br/&gt;&lt;span&gt;Discrete nonlinear systems support a rich variety of localized and extended wave phenomena, with their dynamics sensitively dependent on the symmetries of the underlying interaction forces within the lattice. Odd elasticity, emerging in effective models of active materials, breaks the action-reactio…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Wed Aug 26, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Andrus Giraldo, Stefan Ruschel, and Behrooz Yousefzadeh</p><span>Discrete nonlinear systems support a rich variety of localized and extended wave phenomena, with their dynamics sensitively dependent on the symmetries of the underlying interaction forces within the lattice. Odd elasticity, emerging in effective models of active materials, breaks the action-reactio…</span><br/><p>[Phys. Rev. Research] Published Wed Aug 26, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Periodic and quasiperiodic traveling waves in nonlinear lattices with odd elasticity&lt;/span&gt;</dc:title>
    <dc:creator>Andrus Giraldo, Stefan Ruschel, and Behrooz Yousefzadeh</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/ktnz-14ft</dc:identifier>
    <prism:doi>10.1103/ktnz-14ft</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-26T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/bf072K5dFe21111c024e007522a43a9cb09e19024</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/ae070D2fFf918f0001454fc977f1c524c0e6ca182">
    <title>&lt;span&gt;Enhancing supercurrent-based inertial sensing via interactions in atomtronic angular accelerometers&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/ae070D2fFf918f0001454fc977f1c524c0e6ca182</link>
    <description>Author(s): S. Carmona-López, A. Matos-Abiague, F. Isaule, and L. Morales-Molina&lt;br/&gt;&lt;span&gt;We theoretically investigate supercurrents of ultracold atoms in angularly ac-shaken ring lattices subjected to external rotation. Our results demonstrate how these supercurrents can be harnessed for the development of high-precision atomtronic angular accelerometers. Using both analytical and numer…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Wed Aug 26, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): S. Carmona-López, A. Matos-Abiague, F. Isaule, and L. Morales-Molina</p><span>We theoretically investigate supercurrents of ultracold atoms in angularly ac-shaken ring lattices subjected to external rotation. Our results demonstrate how these supercurrents can be harnessed for the development of high-precision atomtronic angular accelerometers. Using both analytical and numer…</span><br/><p>[Phys. Rev. Research] Published Wed Aug 26, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Enhancing supercurrent-based inertial sensing via interactions in atomtronic angular accelerometers&lt;/span&gt;</dc:title>
    <dc:creator>S. Carmona-López, A. Matos-Abiague, F. Isaule, and L. Morales-Molina</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/zzx2-tttb</dc:identifier>
    <prism:doi>10.1103/zzx2-tttb</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-26T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/ae070D2fFf918f0001454fc977f1c524c0e6ca182</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/7d077Y54D551ae9d48d269b6fcfd98129f4c7a17d">
    <title>&lt;span&gt;Fundamental linewidth limit of electromagnetically induced transparency in a thermal Rydberg ladder&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/7d077Y54D551ae9d48d269b6fcfd98129f4c7a17d</link>
    <description>Author(s): Noah Schlossberger, Nikunjkumar Prajapati, Alexandra B. Artusio-Glimpse, Samuel Berweger, and Christopher L. Holloway&lt;br/&gt;&lt;span&gt;Spectroscopy of Rydberg states has become a popular platform for quantum sensing, with the most common readout scheme being two-photon electromagnetically induced transparency (EIT) using counter-propagating laser beams. In this scheme, the energy resolution of the Rydberg state is set by the spectr…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Wed Aug 26, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Noah Schlossberger, Nikunjkumar Prajapati, Alexandra B. Artusio-Glimpse, Samuel Berweger, and Christopher L. Holloway</p><span>Spectroscopy of Rydberg states has become a popular platform for quantum sensing, with the most common readout scheme being two-photon electromagnetically induced transparency (EIT) using counter-propagating laser beams. In this scheme, the energy resolution of the Rydberg state is set by the spectr…</span><br/><p>[Phys. Rev. Research] Published Wed Aug 26, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Fundamental linewidth limit of electromagnetically induced transparency in a thermal Rydberg ladder&lt;/span&gt;</dc:title>
    <dc:creator>Noah Schlossberger, Nikunjkumar Prajapati, Alexandra B. Artusio-Glimpse, Samuel Berweger, and Christopher L. Holloway</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/g2z2-2w2h</dc:identifier>
    <prism:doi>10.1103/g2z2-2w2h</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-26T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/7d077Y54D551ae9d48d269b6fcfd98129f4c7a17d</prism:url>
    <dc:subject>Letters</dc:subject>
    <prism:section>Letters</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/e9075JebFa017f0f42605784768adda95863bce96">
    <title>&lt;span&gt;Percolation of a cohesive fine particle in a static bed&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/e9075JebFa017f0f42605784768adda95863bce96</link>
    <description>Author(s): Jizhi Zhang, Qiong Zhang, Julio M. Ottino, Paul B. Umbanhowar, and Richard M. Lueptow&lt;br/&gt;&lt;span&gt;Percolation of fine particles (fines) in a static bed of larger particles is central to many industrial and natural processes. Non-cohesive fines either pass through the bed or become trapped depending on multiple factors including particle sizes, friction and restitution coefficients, and size-poly…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Wed Aug 26, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Jizhi Zhang, Qiong Zhang, Julio M. Ottino, Paul B. Umbanhowar, and Richard M. Lueptow</p><span>Percolation of fine particles (fines) in a static bed of larger particles is central to many industrial and natural processes. Non-cohesive fines either pass through the bed or become trapped depending on multiple factors including particle sizes, friction and restitution coefficients, and size-poly…</span><br/><p>[Phys. Rev. Research] Published Wed Aug 26, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Percolation of a cohesive fine particle in a static bed&lt;/span&gt;</dc:title>
    <dc:creator>Jizhi Zhang, Qiong Zhang, Julio M. Ottino, Paul B. Umbanhowar, and Richard M. Lueptow</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/ndnk-2x1g</dc:identifier>
    <prism:doi>10.1103/ndnk-2x1g</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-26T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/e9075JebFa017f0f42605784768adda95863bce96</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/f307eJ1eGb71870f937688539d51da562e724e65b">
    <title>&lt;span&gt;Dephasingless laser wakefield acceleration in a plasma waveguide&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/f307eJ1eGb71870f937688539d51da562e724e65b</link>
    <description>Author(s): J. P. Palastro, K. G. Miller, C. D. Arrowsmith, R. Almeida, M. R. Edwards, A. L. Elliott, A. Kiewel, A. Konzel, L. S. Mack, D. Ramsey, D. Singh, A. G. R. Thomas, and J. Vieira&lt;br/&gt;&lt;span&gt;Laser wakefield accelerators (LWFAs) provide extremely large accelerating gradients for compact electron accelerators and photon sources but are limited by dephasing, where trapped electrons outrun the accelerating phase of the wakefield. Flying-focus pulses can eliminate dephasing by driving a wake…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Wed Aug 26, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): J. P. Palastro, K. G. Miller, C. D. Arrowsmith, R. Almeida, M. R. Edwards, A. L. Elliott, A. Kiewel, A. Konzel, L. S. Mack, D. Ramsey, D. Singh, A. G. R. Thomas, and J. Vieira</p><span>Laser wakefield accelerators (LWFAs) provide extremely large accelerating gradients for compact electron accelerators and photon sources but are limited by dephasing, where trapped electrons outrun the accelerating phase of the wakefield. Flying-focus pulses can eliminate dephasing by driving a wake…</span><br/><p>[Phys. Rev. Research] Published Wed Aug 26, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Dephasingless laser wakefield acceleration in a plasma waveguide&lt;/span&gt;</dc:title>
    <dc:creator>J. P. Palastro, K. G. Miller, C. D. Arrowsmith, R. Almeida, M. R. Edwards, A. L. Elliott, A. Kiewel, A. Konzel, L. S. Mack, D. Ramsey, D. Singh, A. G. R. Thomas, and J. Vieira</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/69yc-j1qh</dc:identifier>
    <prism:doi>10.1103/69yc-j1qh</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-26T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/f307eJ1eGb71870f937688539d51da562e724e65b</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/8507dJ14Eda13f0893640945d0e16d4e6db818b88">
    <title>&lt;span&gt;Revealing laser and electron beam evolution in 10-GeV-class laser-plasma accelerators&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/8507dJ14Eda13f0893640945d0e16d4e6db818b88</link>
    <description>Author(s): H. Tang, A. Picksley, C. Benedetti, R. Li, H. E. Tsai, T. Mandal, E. Park, K. Nakamura, J. Stackhouse, D. Terzani, C. B. Schroeder, J. van Tilborg, J. Osterhoff, C. G. R. Geddes, and A. J. Gonsalves&lt;br/&gt;&lt;span&gt;Guiding relativistically intense laser pulses in low-density plasmas enables extended acceleration lengths in laser–plasma accelerators (LPAs), allowing for the production of multi-GeV electron beams. Quantitative interpretation of such experiments is often limited by substantial uncertainties in ke…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 25, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): H. Tang, A. Picksley, C. Benedetti, R. Li, H. E. Tsai, T. Mandal, E. Park, K. Nakamura, J. Stackhouse, D. Terzani, C. B. Schroeder, J. van Tilborg, J. Osterhoff, C. G. R. Geddes, and A. J. Gonsalves</p><span>Guiding relativistically intense laser pulses in low-density plasmas enables extended acceleration lengths in laser–plasma accelerators (LPAs), allowing for the production of multi-GeV electron beams. Quantitative interpretation of such experiments is often limited by substantial uncertainties in ke…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 25, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Revealing laser and electron beam evolution in 10-GeV-class laser-plasma accelerators&lt;/span&gt;</dc:title>
    <dc:creator>H. Tang, A. Picksley, C. Benedetti, R. Li, H. E. Tsai, T. Mandal, E. Park, K. Nakamura, J. Stackhouse, D. Terzani, C. B. Schroeder, J. van Tilborg, J. Osterhoff, C. G. R. Geddes, and A. J. Gonsalves</dc:creator>
    <dc:date>2026-08-25T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/qqcv-f29q</dc:identifier>
    <prism:doi>10.1103/qqcv-f29q</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-25T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/8507dJ14Eda13f0893640945d0e16d4e6db818b88</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/9c077Y86W571688565b03ab0c319795dfe586cdb4">
    <title>&lt;span&gt;Visualizing pore collapse in explosive using x-ray picosecond tracking imaging&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/9c077Y86W571688565b03ab0c319795dfe586cdb4</link>
    <description>Author(s): Zhurong Cao, Genbai Chu, Xiao Ma, Hua Fu, Lu Zhang, Tao Chen, Yukun Li, Shaoyong Tu, Yuncan Ma, Liling Li, Longfei Jing, Yin Yu, and Cangli Liu&lt;br/&gt;&lt;span&gt;Pore collapse, which dominates shock-initiation hotspots, is a long-standing and unresolved issue in detonation physics and energetic materials. In this paper, we proposed the X-ray picosecond tracking imaging for accurately observing the pore collapse of explosives, and presented the dynamic multip…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 25, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Zhurong Cao, Genbai Chu, Xiao Ma, Hua Fu, Lu Zhang, Tao Chen, Yukun Li, Shaoyong Tu, Yuncan Ma, Liling Li, Longfei Jing, Yin Yu, and Cangli Liu</p><span>Pore collapse, which dominates shock-initiation hotspots, is a long-standing and unresolved issue in detonation physics and energetic materials. In this paper, we proposed the X-ray picosecond tracking imaging for accurately observing the pore collapse of explosives, and presented the dynamic multip…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 25, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Visualizing pore collapse in explosive using x-ray picosecond tracking imaging&lt;/span&gt;</dc:title>
    <dc:creator>Zhurong Cao, Genbai Chu, Xiao Ma, Hua Fu, Lu Zhang, Tao Chen, Yukun Li, Shaoyong Tu, Yuncan Ma, Liling Li, Longfei Jing, Yin Yu, and Cangli Liu</dc:creator>
    <dc:date>2026-08-25T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/35tn-jt3r</dc:identifier>
    <prism:doi>10.1103/35tn-jt3r</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-25T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/9c077Y86W571688565b03ab0c319795dfe586cdb4</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/5207cJ87D7e19608f2a66eb0b5b8a065eea7650e3">
    <title>&lt;span&gt;Dressed-state optomechanics in the few-photon regime&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/5207cJ87D7e19608f2a66eb0b5b8a065eea7650e3</link>
    <description>Author(s): Surangana Sengupta, Björn Kubala, Joachim Ankerhold, and Ciprian Padurariu&lt;br/&gt;&lt;span&gt;Efficient optomechanical cooling typically requires high photon occupancy to maximize cooling power, a constraint that generally limits the degree of coherent quantum control available in the few-photon regime. Here, we investigate this trade-off by considering a strongly nonlinear cavity operated a…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 25, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Surangana Sengupta, Björn Kubala, Joachim Ankerhold, and Ciprian Padurariu</p><span>Efficient optomechanical cooling typically requires high photon occupancy to maximize cooling power, a constraint that generally limits the degree of coherent quantum control available in the few-photon regime. Here, we investigate this trade-off by considering a strongly nonlinear cavity operated a…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 25, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Dressed-state optomechanics in the few-photon regime&lt;/span&gt;</dc:title>
    <dc:creator>Surangana Sengupta, Björn Kubala, Joachim Ankerhold, and Ciprian Padurariu</dc:creator>
    <dc:date>2026-08-25T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/2pg1-7jrl</dc:identifier>
    <prism:doi>10.1103/2pg1-7jrl</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-25T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/5207cJ87D7e19608f2a66eb0b5b8a065eea7650e3</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/4c071A0cZ7814401348015e66b0f8f29f92ed0c3b">
    <title>&lt;span&gt;Acoustic, electromagnetic and elastic spacetime media that compute their own inverse&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/4c071A0cZ7814401348015e66b0f8f29f92ed0c3b</link>
    <description>Author(s): Dirk-Jan van Manen, Johannes Aichele, Jonas Müller, Marc Serra-Garcia, and Kees Wapenaar&lt;br/&gt;&lt;span&gt;Time materials are materials with acoustic, electromagnetic or elastic properties that change while waves are propagating through them. Waves can scatter from such temporal inhomogeneities, but due to causality, they cannot reflect back in time. As a result, time-scattered wavefields do not resemble…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 25, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Dirk-Jan van Manen, Johannes Aichele, Jonas Müller, Marc Serra-Garcia, and Kees Wapenaar</p><span>Time materials are materials with acoustic, electromagnetic or elastic properties that change while waves are propagating through them. Waves can scatter from such temporal inhomogeneities, but due to causality, they cannot reflect back in time. As a result, time-scattered wavefields do not resemble…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 25, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Acoustic, electromagnetic and elastic spacetime media that compute their own inverse&lt;/span&gt;</dc:title>
    <dc:creator>Dirk-Jan van Manen, Johannes Aichele, Jonas Müller, Marc Serra-Garcia, and Kees Wapenaar</dc:creator>
    <dc:date>2026-08-25T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/hghj-fgsw</dc:identifier>
    <prism:doi>10.1103/hghj-fgsw</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-25T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/4c071A0cZ7814401348015e66b0f8f29f92ed0c3b</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/2707bJ11F7a1be02627156f653ae2b44b9615a1eb">
    <title>&lt;span&gt;Hall effect in multileg bosonic ladders&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/2707bJ11F7a1be02627156f653ae2b44b9615a1eb</link>
    <description>Author(s): E. Orignac, R. Citro, and Thierry Giamarchi&lt;br/&gt;&lt;span&gt;We use bosonization to analyze the ground state Hall response of interacting bosonic N-leg ladders threaded by a flux. We derive an explicit expression of the Hall imbalance in a perturbative expansion in the band curvature, retaining fully the interactions. For small magnetic field the Hall resista…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 25, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): E. Orignac, R. Citro, and Thierry Giamarchi</p><span>We use bosonization to analyze the ground state Hall response of interacting bosonic N-leg ladders threaded by a flux. We derive an explicit expression of the Hall imbalance in a perturbative expansion in the band curvature, retaining fully the interactions. For small magnetic field the Hall resista…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 25, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Hall effect in multileg bosonic ladders&lt;/span&gt;</dc:title>
    <dc:creator>E. Orignac, R. Citro, and Thierry Giamarchi</dc:creator>
    <dc:date>2026-08-25T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/lt1p-1pv2</dc:identifier>
    <prism:doi>10.1103/lt1p-1pv2</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-25T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/2707bJ11F7a1be02627156f653ae2b44b9615a1eb</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/7d074Jf4A491c70a22350919ee224007bf1498e5f">
    <title>&lt;span&gt;Ultracompact low cost two mode squeezed light source&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/7d074Jf4A491c70a22350919ee224007bf1498e5f</link>
    <description>Author(s): Shahar Monsa, Shmuel Sternklar, and Eliran Talker&lt;br/&gt;&lt;span&gt;Quantum-correlated states of light, such as squeezed states, constitute a fundamental resource for quantum technologies, enabling enhanced performance in quantum metrology, quantum information processing, and quantum communications. The practical deployment of such technologies requires squeezed-lig…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 25, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Shahar Monsa, Shmuel Sternklar, and Eliran Talker</p><span>Quantum-correlated states of light, such as squeezed states, constitute a fundamental resource for quantum technologies, enabling enhanced performance in quantum metrology, quantum information processing, and quantum communications. The practical deployment of such technologies requires squeezed-lig…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 25, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Ultracompact low cost two mode squeezed light source&lt;/span&gt;</dc:title>
    <dc:creator>Shahar Monsa, Shmuel Sternklar, and Eliran Talker</dc:creator>
    <dc:date>2026-08-25T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>Phys. Rev. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/6psw-fxck</dc:identifier>
    <prism:doi>10.1103/6psw-fxck</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-25T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/7d074Jf4A491c70a22350919ee224007bf1498e5f</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/39079Y00Gf215c9bb5b57d7304c011b125450f5fe">
    <title>&lt;span&gt;Geometric origin of macroscopic alignment in granular flows&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/39079Y00Gf215c9bb5b57d7304c011b125450f5fe</link>
    <description>Author(s): Christopher Harper, Eric C. P. Breard, P. J. Zrelak, and George W. Bergantz&lt;br/&gt;&lt;span&gt;Predicting the nematic alignment of nonspherical particles in sheared granular flows is essential for understanding the rheology, packing, and constitutive response of dense particulate media. While macroscopic fabric is typically attributed to complex multibody interactions, stress transmission, an…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Mon Aug 24, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Christopher Harper, Eric C. P. Breard, P. J. Zrelak, and George W. Bergantz</p><span>Predicting the nematic alignment of nonspherical particles in sheared granular flows is essential for understanding the rheology, packing, and constitutive response of dense particulate media. While macroscopic fabric is typically attributed to complex multibody interactions, stress transmission, an…</span><br/><p>[Phys. Rev. Research] Published Mon Aug 24, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Geometric origin of macroscopic alignment in granular flows&lt;/span&gt;</dc:title>
    <dc:creator>Christopher Harper, Eric C. P. Breard, P. J. Zrelak, and George W. Bergantz</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/hmz8-n2d9</dc:identifier>
    <prism:doi>10.1103/hmz8-n2d9</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-24T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/39079Y00Gf215c9bb5b57d7304c011b125450f5fe</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/9d07cYf7Da024e07b0390b60f9253fd5470d63ec8">
    <title>&lt;span&gt;Ponderomotive achromat for electron optics: Radially polarized annular focusing and a round-lens corrector regime&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/9d07cYf7Da024e07b0390b60f9253fd5470d63ec8</link>
    <description>Author(s): Yuuki Uesugi and Yuichi Kozawa&lt;br/&gt;&lt;span&gt;Ponderomotive electron optics has attracted attention because structured optical fields provide round-lens functionalities, including negative lens power and negative spherical aberration, that are difficult to achieve with conventional Einzel and solenoid lenses. How ponderomotive lenses disperse w…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Mon Aug 24, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Yuuki Uesugi and Yuichi Kozawa</p><span>Ponderomotive electron optics has attracted attention because structured optical fields provide round-lens functionalities, including negative lens power and negative spherical aberration, that are difficult to achieve with conventional Einzel and solenoid lenses. How ponderomotive lenses disperse w…</span><br/><p>[Phys. Rev. Research] Published Mon Aug 24, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Ponderomotive achromat for electron optics: Radially polarized annular focusing and a round-lens corrector regime&lt;/span&gt;</dc:title>
    <dc:creator>Yuuki Uesugi and Yuichi Kozawa</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/5s6w-2dt5</dc:identifier>
    <prism:doi>10.1103/5s6w-2dt5</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-24T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/9d07cYf7Da024e07b0390b60f9253fd5470d63ec8</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/91073J19E4316b01a24d9d5744347073e69a833a7">
    <title>&lt;span&gt;Extracting conformal data from finite-size tensor-network flow in critical two-dimensional classical models&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/91073J19E4316b01a24d9d5744347073e69a833a7</link>
    <description>Author(s): Sing-Hong Chan and Pochung Chen&lt;br/&gt;&lt;span&gt;We present a general framework for extracting conformal data from critical two-dimensional classical lattice models using finite-size tensor-network flow. The central idea is to identify, from transfer-matrix spectra, a self-consistent finite-size window together with a crossover scale that separate…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Mon Aug 24, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Sing-Hong Chan and Pochung Chen</p><span>We present a general framework for extracting conformal data from critical two-dimensional classical lattice models using finite-size tensor-network flow. The central idea is to identify, from transfer-matrix spectra, a self-consistent finite-size window together with a crossover scale that separate…</span><br/><p>[Phys. Rev. Research] Published Mon Aug 24, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Extracting conformal data from finite-size tensor-network flow in critical two-dimensional classical models&lt;/span&gt;</dc:title>
    <dc:creator>Sing-Hong Chan and Pochung Chen</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/sp3b-cnyg</dc:identifier>
    <prism:doi>10.1103/sp3b-cnyg</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-24T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/91073J19E4316b01a24d9d5744347073e69a833a7</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/a4076Yc0Haf1d09c75ca59d5dcf95e82bbce0c03e">
    <title>&lt;span&gt;Freezing and shielding under global quenches for long-range interacting many-body systems&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/a4076Yc0Haf1d09c75ca59d5dcf95e82bbce0c03e</link>
    <description>Author(s): Daniel Arrufat-Vicente and Nicolò Defenu&lt;br/&gt;&lt;span&gt;We investigate how local perturbations spread on long-range interacting spin chains and show how their non-equilibrium behavior exactly matches the one of a Fermi-Hubbard model with long-range hoppings. We then focus on the thermalization of the fermionic model following a sudden quench of local int…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Mon Aug 24, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Daniel Arrufat-Vicente and Nicolò Defenu</p><span>We investigate how local perturbations spread on long-range interacting spin chains and show how their non-equilibrium behavior exactly matches the one of a Fermi-Hubbard model with long-range hoppings. We then focus on the thermalization of the fermionic model following a sudden quench of local int…</span><br/><p>[Phys. Rev. Research] Published Mon Aug 24, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Freezing and shielding under global quenches for long-range interacting many-body systems&lt;/span&gt;</dc:title>
    <dc:creator>Daniel Arrufat-Vicente and Nicolò Defenu</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/f7cn-h597</dc:identifier>
    <prism:doi>10.1103/f7cn-h597</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-24T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/a4076Yc0Haf1d09c75ca59d5dcf95e82bbce0c03e</prism:url>
    <dc:subject>Letters</dc:subject>
    <prism:section>Letters</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/47076Y17F502770466bb8c834276ac7d5dedb38b6">
    <title>&lt;span&gt;Beyond local detailed balance: Microscopic rates reshape nonequilibrium phase behavior&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/47076Y17F502770466bb8c834276ac7d5dedb38b6</link>
    <description>Author(s): Takahiro Kanazawa, Kyogo Kawaguchi, and Kyosuke Adachi&lt;br/&gt;&lt;span&gt;Local detailed balance (LDB) is a central guiding principle for modeling nonequilibrium stochastic dynamics, yet it only constrains the ratio of forward and backward transition rates and does not fix the steady state. Although the functional form of rates under the same LDB has been shown to affect …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Mon Aug 24, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Takahiro Kanazawa, Kyogo Kawaguchi, and Kyosuke Adachi</p><span>Local detailed balance (LDB) is a central guiding principle for modeling nonequilibrium stochastic dynamics, yet it only constrains the ratio of forward and backward transition rates and does not fix the steady state. Although the functional form of rates under the same LDB has been shown to affect …</span><br/><p>[Phys. Rev. Research] Published Mon Aug 24, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Beyond local detailed balance: Microscopic rates reshape nonequilibrium phase behavior&lt;/span&gt;</dc:title>
    <dc:creator>Takahiro Kanazawa, Kyogo Kawaguchi, and Kyosuke Adachi</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/hvzp-wjmf</dc:identifier>
    <prism:doi>10.1103/hvzp-wjmf</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-24T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/47076Y17F502770466bb8c834276ac7d5dedb38b6</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/62070Y73Z751fd9604572268290f3b9e5943b1090">
    <title>&lt;span&gt;Enhanced superconductivity in proximity to peaks in densities of states&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/62070Y73Z751fd9604572268290f3b9e5943b1090</link>
    <description>Author(s): Joshua Althüser, Ilya M. Eremin, and Götz S. Uhrig&lt;br/&gt;&lt;span&gt;For the BCS theory of superconductivity, the electron-phonon interaction is transformed to an attractive electron-electron interaction in the vicinity of the Fermi energy only. At the same time, its formal derivation using a unitary transformation reveals that the electrons attract one another whene…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Fri Aug 21, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Joshua Althüser, Ilya M. Eremin, and Götz S. Uhrig</p><span>For the BCS theory of superconductivity, the electron-phonon interaction is transformed to an attractive electron-electron interaction in the vicinity of the Fermi energy only. At the same time, its formal derivation using a unitary transformation reveals that the electrons attract one another whene…</span><br/><p>[Phys. Rev. Research] Published Fri Aug 21, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Enhanced superconductivity in proximity to peaks in densities of states&lt;/span&gt;</dc:title>
    <dc:creator>Joshua Althüser, Ilya M. Eremin, and Götz S. Uhrig</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/xbsf-8l6q</dc:identifier>
    <prism:doi>10.1103/xbsf-8l6q</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-21T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/62070Y73Z751fd9604572268290f3b9e5943b1090</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/74079J04Qfd18005b1176680e80ca6a86e6761a9e">
    <title>&lt;span&gt;Paramagnetic half-moon-shaped diffuse scattering arising from three-dimensional magnetic frustration&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/74079J04Qfd18005b1176680e80ca6a86e6761a9e</link>
    <description>Author(s): Nelly Natsch, Tara N. Tošić, Jian-Rui Soh, and Nicola A. Spaldin&lt;br/&gt;&lt;span&gt;We use spin dynamics simulations to determine the origin of the unusual correlated diffuse scattering, characterised by half-moon shapes bridging the magnetic Bragg peaks, observed in the polarised elastic neutron scattering from manganese tungstate, MnWO. We first fit a Heisenberg Hamiltonian with …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 20, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Nelly Natsch, Tara N. Tošić, Jian-Rui Soh, and Nicola A. Spaldin</p><span>We use spin dynamics simulations to determine the origin of the unusual correlated diffuse scattering, characterised by half-moon shapes bridging the magnetic Bragg peaks, observed in the polarised elastic neutron scattering from manganese tungstate, MnWO. We first fit a Heisenberg Hamiltonian with …</span><br/><p>[Phys. Rev. Research] Published Thu Aug 20, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Paramagnetic half-moon-shaped diffuse scattering arising from three-dimensional magnetic frustration&lt;/span&gt;</dc:title>
    <dc:creator>Nelly Natsch, Tara N. Tošić, Jian-Rui Soh, and Nicola A. Spaldin</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/v9pz-nxph</dc:identifier>
    <prism:doi>10.1103/v9pz-nxph</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-20T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/74079J04Qfd18005b1176680e80ca6a86e6761a9e</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/9e079Ye1Dec23a0053960e8456b1da3b8091e0f9a">
    <title>&lt;span&gt;Pair-loaded electron-only magnetic reconnection using laser-driven capacitor coils&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/9e079Ye1Dec23a0053960e8456b1da3b8091e0f9a</link>
    <description>Author(s): Brandon K. Russell, Qian Qian, Rebecca Fitzgarrald, Yang Zhang, Stepan S. Bulanov, Sergei V. Bulanov, Hui Chen, Lan Gao, Gabriele M. Grittani, Xiaocan Li, Kian Orr, Geoffrey Pomraning, Kevin M. Schoeffler, Alexander G. R. Thomas, and Hantao Ji&lt;br/&gt;&lt;span&gt;We propose and simulate a laboratory platform to study the effects of positrons in magnetic reconnection using laser-driven capacitor coils. Using particle-in-cell simulations, we show that externally injected MeV electron-positron pairs are trapped in the coil current sheet, significantly modifying…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 20, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Brandon K. Russell, Qian Qian, Rebecca Fitzgarrald, Yang Zhang, Stepan S. Bulanov, Sergei V. Bulanov, Hui Chen, Lan Gao, Gabriele M. Grittani, Xiaocan Li, Kian Orr, Geoffrey Pomraning, Kevin M. Schoeffler, Alexander G. R. Thomas, and Hantao Ji</p><span>We propose and simulate a laboratory platform to study the effects of positrons in magnetic reconnection using laser-driven capacitor coils. Using particle-in-cell simulations, we show that externally injected MeV electron-positron pairs are trapped in the coil current sheet, significantly modifying…</span><br/><p>[Phys. Rev. Research] Published Thu Aug 20, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Pair-loaded electron-only magnetic reconnection using laser-driven capacitor coils&lt;/span&gt;</dc:title>
    <dc:creator>Brandon K. Russell, Qian Qian, Rebecca Fitzgarrald, Yang Zhang, Stepan S. Bulanov, Sergei V. Bulanov, Hui Chen, Lan Gao, Gabriele M. Grittani, Xiaocan Li, Kian Orr, Geoffrey Pomraning, Kevin M. Schoeffler, Alexander G. R. Thomas, and Hantao Ji</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/254n-wwyj</dc:identifier>
    <prism:doi>10.1103/254n-wwyj</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-20T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/9e079Ye1Dec23a0053960e8456b1da3b8091e0f9a</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/75071Jb5Z8e18f0383706aa050d292e1c215a00b1">
    <title>&lt;span&gt;Lieb-Robinson correlation function for long disordered transverse-field Ising chains&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/75071Jb5Z8e18f0383706aa050d292e1c215a00b1</link>
    <description>Author(s): Brendan J. Mahoney and Craig S. Lent&lt;br/&gt;&lt;span&gt;The Lieb–Robinson correlation function can be used to characterize the propagation of quantum information in Ising chains. Considerable work has been done to establish on this correlation function in various circumstances. To actually calculate the of the correlation function directly typically requ…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 20, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Brendan J. Mahoney and Craig S. Lent</p><span>The Lieb–Robinson correlation function can be used to characterize the propagation of quantum information in Ising chains. Considerable work has been done to establish on this correlation function in various circumstances. To actually calculate the of the correlation function directly typically requ…</span><br/><p>[Phys. Rev. Research] Published Thu Aug 20, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Lieb-Robinson correlation function for long disordered transverse-field Ising chains&lt;/span&gt;</dc:title>
    <dc:creator>Brendan J. Mahoney and Craig S. Lent</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/xd68-dpwm</dc:identifier>
    <prism:doi>10.1103/xd68-dpwm</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-20T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/75071Jb5Z8e18f0383706aa050d292e1c215a00b1</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/8d07aDf5F341760ef15b7550d35f69d7b248bc549">
    <title>&lt;span&gt;Universal weakly fault-tolerant quantum computation via code switching in the [[8,3,2]] code&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/8d07aDf5F341760ef15b7550d35f69d7b248bc549</link>
    <description>Author(s): Shixin Wu, Dawei Zhong, Todd A. Brun, and Daniel A. Lidar&lt;br/&gt;&lt;span&gt;Code-switching offers a route to universal, fault-tolerant quantum computation by circumventing the limitation implied by the Eastin-Knill theorem against a universal transversal gate set within a single quantum code. Here, we present a fault-tolerant code-switching protocol between two versions of …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 20, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Shixin Wu, Dawei Zhong, Todd A. Brun, and Daniel A. Lidar</p><span>Code-switching offers a route to universal, fault-tolerant quantum computation by circumventing the limitation implied by the Eastin-Knill theorem against a universal transversal gate set within a single quantum code. Here, we present a fault-tolerant code-switching protocol between two versions of …</span><br/><p>[Phys. Rev. Research] Published Thu Aug 20, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Universal weakly fault-tolerant quantum computation via code switching in the [[8,3,2]] code&lt;/span&gt;</dc:title>
    <dc:creator>Shixin Wu, Dawei Zhong, Todd A. Brun, and Daniel A. Lidar</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/4gwn-6cnx</dc:identifier>
    <prism:doi>10.1103/4gwn-6cnx</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-20T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/8d07aDf5F341760ef15b7550d35f69d7b248bc549</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/a807dY98Dd922c03196098782431442e2749491db">
    <title>&lt;span&gt;Quantitative analysis of resonant ionization by smooth laser pulses: Connection between effective Hamiltonian theory and strong-field dressed continua&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/a807dY98Dd922c03196098782431442e2749491db</link>
    <description>Author(s): Jakob Nicolai Bruhnke and Jan Marcus Dahlström&lt;br/&gt;&lt;span&gt;Resonant photoionization in the intense high-frequency regime can exhibit extremely asymmetric Autler–Townes doublets whose origin remains debated. It has been attributed either to interference between perturbative ionization pathways or to a non-perturbative dressing of the continuum. Here we show …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 20, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Jakob Nicolai Bruhnke and Jan Marcus Dahlström</p><span>Resonant photoionization in the intense high-frequency regime can exhibit extremely asymmetric Autler–Townes doublets whose origin remains debated. It has been attributed either to interference between perturbative ionization pathways or to a non-perturbative dressing of the continuum. Here we show …</span><br/><p>[Phys. Rev. Research] Published Thu Aug 20, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Quantitative analysis of resonant ionization by smooth laser pulses: Connection between effective Hamiltonian theory and strong-field dressed continua&lt;/span&gt;</dc:title>
    <dc:creator>Jakob Nicolai Bruhnke and Jan Marcus Dahlström</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/lnbk-npp9</dc:identifier>
    <prism:doi>10.1103/lnbk-npp9</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-20T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/a807dY98Dd922c03196098782431442e2749491db</prism:url>
    <dc:subject>Letters</dc:subject>
    <prism:section>Letters</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/b1077J97Fcc18b02f2ea34887ee389f78df952324">
    <title>&lt;span&gt;Controlling directionality in dipolar colloids via relaxation in alternating rotating fields&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/b1077J97Fcc18b02f2ea34887ee389f78df952324</link>
    <description>Author(s): Tatsuya Tanaka, Aldo Spatafora-Salazar, and Sibani Lisa Biswal&lt;br/&gt;&lt;span&gt;Time-varying external fields can program dipolar interactions in soft matter systems. Continuously rotating fields are widely used to promote isotropic self-assembly, but finite relaxation of an induced dipole generically introduces a phase lag that can drive the spinning of both individual particle…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Wed Aug 19, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Tatsuya Tanaka, Aldo Spatafora-Salazar, and Sibani Lisa Biswal</p><span>Time-varying external fields can program dipolar interactions in soft matter systems. Continuously rotating fields are widely used to promote isotropic self-assembly, but finite relaxation of an induced dipole generically introduces a phase lag that can drive the spinning of both individual particle…</span><br/><p>[Phys. Rev. Research] Published Wed Aug 19, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Controlling directionality in dipolar colloids via relaxation in alternating rotating fields&lt;/span&gt;</dc:title>
    <dc:creator>Tatsuya Tanaka, Aldo Spatafora-Salazar, and Sibani Lisa Biswal</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/jn1b-y4cx</dc:identifier>
    <prism:doi>10.1103/jn1b-y4cx</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-19T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/b1077J97Fcc18b02f2ea34887ee389f78df952324</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/d0074Jc7Gcd16a0d830e715470e9804cebe2dcf57">
    <title>&lt;span&gt;Erratum: Current-induced spin and orbital polarization in the ferroelectric Rashba semiconductor GeTe [Phys. Rev. Research 7, 043329 (2025)]&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/d0074Jc7Gcd16a0d830e715470e9804cebe2dcf57</link>
    <description>Author(s): Sergio Leiva-Montecinos, Libor Vojáček, Jing Li, Mairbek Chshiev, Laurent Vila, Ingrid Mertig, and Annika Johansson&lt;br/&gt;[Phys. Rev. Research] Published Wed Aug 19, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Sergio Leiva-Montecinos, Libor Vojáček, Jing Li, Mairbek Chshiev, Laurent Vila, Ingrid Mertig, and Annika Johansson</p><p>[Phys. Rev. Research] Published Wed Aug 19, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Erratum: Current-induced spin and orbital polarization in the ferroelectric Rashba semiconductor GeTe [Phys. Rev. Research 7, 043329 (2025)]&lt;/span&gt;</dc:title>
    <dc:creator>Sergio Leiva-Montecinos, Libor Vojáček, Jing Li, Mairbek Chshiev, Laurent Vila, Ingrid Mertig, and Annika Johansson</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/6lwq-233j</dc:identifier>
    <prism:doi>10.1103/6lwq-233j</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-19T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/d0074Jc7Gcd16a0d830e715470e9804cebe2dcf57</prism:url>
    <dc:subject>Errata</dc:subject>
    <prism:section>Errata</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/9407cY1dE9b1ca9b976928a756736fde761475bb4">
    <title>&lt;span&gt;Broadband hard x-ray attosecond pulses from extremely chirped electron beams&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/9407cY1dE9b1ca9b976928a756736fde761475bb4</link>
    <description>Author(s): River R. Robles, Veronica Guo, David Cesar, Paris Franz, Aliaksei Halavanau, Alberto Lutman, Takahiro Sato, Sanghoon Song, Nicholas Sudar, Yanwen Sun, Zhen Zhang, Diling Zhu, and Agostino Marinelli&lt;br/&gt;&lt;span&gt;Attosecond pulses from free-electron lasers have opened the doors to atomic site-specific studies of bound electronic dynamics on their natural, sub-femtosecond timescales. Key to their success has been electron beam shaping techniques enabling the generation of sub-femtosecond current spikes with p…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Wed Aug 19, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): River R. Robles, Veronica Guo, David Cesar, Paris Franz, Aliaksei Halavanau, Alberto Lutman, Takahiro Sato, Sanghoon Song, Nicholas Sudar, Yanwen Sun, Zhen Zhang, Diling Zhu, and Agostino Marinelli</p><span>Attosecond pulses from free-electron lasers have opened the doors to atomic site-specific studies of bound electronic dynamics on their natural, sub-femtosecond timescales. Key to their success has been electron beam shaping techniques enabling the generation of sub-femtosecond current spikes with p…</span><br/><p>[Phys. Rev. Research] Published Wed Aug 19, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Broadband hard x-ray attosecond pulses from extremely chirped electron beams&lt;/span&gt;</dc:title>
    <dc:creator>River R. Robles, Veronica Guo, David Cesar, Paris Franz, Aliaksei Halavanau, Alberto Lutman, Takahiro Sato, Sanghoon Song, Nicholas Sudar, Yanwen Sun, Zhen Zhang, Diling Zhu, and Agostino Marinelli</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/2w1p-jvp1</dc:identifier>
    <prism:doi>10.1103/2w1p-jvp1</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-19T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/9407cY1dE9b1ca9b976928a756736fde761475bb4</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/a807aYe4S6a2e80fd1610fb2272ee926281df52e4">
    <title>&lt;span&gt;Quantum disordered ground state and relative proximity to an exactly solvable model in the frustrated magnet CeMgAl${}_{11}$O${}_{19}$&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/a807aYe4S6a2e80fd1610fb2272ee926281df52e4</link>
    <description>Author(s): G. Bastien, A. Eliáš, V. Anderle, A. Kancko, C. A. Corrêa, S. Kumar, P. Proschek, J. Prokleška, L. Nádherný, D. Sedmidubský, T. Treu, P. Gegenwart, M. Kratochvílová, M. Žonda, and R. H. Colman&lt;br/&gt;&lt;span&gt;The magnetic properties of the triangular magnet CeMgAl${}_{11}$O${}_{19}$ were investigated by magnetization and specific heat measurements down to $T=0.03\phantom{\rule{0.167em}{0ex}}$K on single crystals grown by the floating zone method. The formation of effective spins ${S}_{eff}=1/2$ below $T&amp;amp;…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Wed Aug 19, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): G. Bastien, A. Eliáš, V. Anderle, A. Kancko, C. A. Corrêa, S. Kumar, P. Proschek, J. Prokleška, L. Nádherný, D. Sedmidubský, T. Treu, P. Gegenwart, M. Kratochvílová, M. Žonda, and R. H. Colman</p><span>The magnetic properties of the triangular magnet CeMgAl<math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><msub><mi></mi><mn>11</mn></msub></math>O<math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><msub><mi></mi><mn>19</mn></msub></math> were investigated by magnetization and specific heat measurements down to <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mi>T</mi><mo>=</mo><mn>0.03</mn><mspace width="0.167em"></mspace></mrow></math>K on single crystals grown by the floating zone method. The formation of effective spins <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><msub><mi>S</mi><mstyle mathvariant="normal"><mi>e</mi><mi>f</mi><mi>f</mi></mstyle></msub><mo>=</mo><mn>1</mn><mi>/</mi><mn>2</mn></mrow></math> below <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mi>T</mi><mo>&lt;</mo><mn>10</mn></mrow></math>,K was confirmed both by DFT calculations and sp…</span><br/><p>[Phys. Rev. Research] Published Wed Aug 19, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Quantum disordered ground state and relative proximity to an exactly solvable model in the frustrated magnet CeMgAl${}_{11}$O${}_{19}$&lt;/span&gt;</dc:title>
    <dc:creator>G. Bastien, A. Eliáš, V. Anderle, A. Kancko, C. A. Corrêa, S. Kumar, P. Proschek, J. Prokleška, L. Nádherný, D. Sedmidubský, T. Treu, P. Gegenwart, M. Kratochvílová, M. Žonda, and R. H. Colman</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/kqxq-g723</dc:identifier>
    <prism:doi>10.1103/kqxq-g723</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-19T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/a807aYe4S6a2e80fd1610fb2272ee926281df52e4</prism:url>
    <dc:subject>Letters</dc:subject>
    <prism:section>Letters</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/90079J4cFfbE1a18e08722c02161a8faa3e38f09f">
    <title>&lt;span&gt;Observation of end-to-end pumping in a quasiperiodic Fibonacci-type photonic chain&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/90079J4cFfbE1a18e08722c02161a8faa3e38f09f</link>
    <description>Author(s): Arnob Kumar Ghosh, Ang Chen, Ashraf El Hassan, Patric Holmvall, Mohamed Bourennane, and Annica M. Black-Schaffer&lt;br/&gt;&lt;span&gt;End-to-end pumps utilizing edge-localized states offer a promising route to operate as connecting buses, supplying efficient and robust connectivity between non-neighboring elements in a network. Here, we investigate a finite quasiperiodic Fibonacci-type photonic chain and demonstrate its ability fo…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Wed Aug 19, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Arnob Kumar Ghosh, Ang Chen, Ashraf El Hassan, Patric Holmvall, Mohamed Bourennane, and Annica M. Black-Schaffer</p><span>End-to-end pumps utilizing edge-localized states offer a promising route to operate as connecting buses, supplying efficient and robust connectivity between non-neighboring elements in a network. Here, we investigate a finite quasiperiodic Fibonacci-type photonic chain and demonstrate its ability fo…</span><br/><p>[Phys. Rev. Research] Published Wed Aug 19, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Observation of end-to-end pumping in a quasiperiodic Fibonacci-type photonic chain&lt;/span&gt;</dc:title>
    <dc:creator>Arnob Kumar Ghosh, Ang Chen, Ashraf El Hassan, Patric Holmvall, Mohamed Bourennane, and Annica M. Black-Schaffer</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/vxx3-l3h4</dc:identifier>
    <prism:doi>10.1103/vxx3-l3h4</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-19T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/90079J4cFfbE1a18e08722c02161a8faa3e38f09f</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/f607eDc1W6f1290a91688fb4c9f3ed5070cde7ed5">
    <title>&lt;span&gt;Block encoding of sparse matrices via coherent permutation&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/f607eDc1W6f1290a91688fb4c9f3ed5070cde7ed5</link>
    <description>Author(s): Abhishek Setty&lt;br/&gt;&lt;span&gt;Block encoding of sparse matrices underpins quantum algorithms such as quantum singular value transformation, Hamiltonian simulation, and quantum linear system solvers, yet its efficient gate-level realization remains challenging, with index-mapping oracles constituting one important source of overh…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Wed Aug 19, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Abhishek Setty</p><span>Block encoding of sparse matrices underpins quantum algorithms such as quantum singular value transformation, Hamiltonian simulation, and quantum linear system solvers, yet its efficient gate-level realization remains challenging, with index-mapping oracles constituting one important source of overh…</span><br/><p>[Phys. Rev. Research] Published Wed Aug 19, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Block encoding of sparse matrices via coherent permutation&lt;/span&gt;</dc:title>
    <dc:creator>Abhishek Setty</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/1nts-v6y9</dc:identifier>
    <prism:doi>10.1103/1nts-v6y9</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-19T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/f607eDc1W6f1290a91688fb4c9f3ed5070cde7ed5</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/3e072K23De01521ba2c33ff15366d0fc0f9ecc402">
    <title>&lt;span&gt;Population pumping of vibrational and rotational quantum states in the triatomic hydrogen ion observed by electron-beam-assisted high-resolution spectroscopy&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/3e072K23De01521ba2c33ff15366d0fc0f9ecc402</link>
    <description>Author(s): Marleen Maxton, Lukas Berger, Jonas Bechtel, Lucia Enzmann, Manfred Grieser, Florian Grussie, Jannis Himmelsbach, Leonard W. Isberner, Viviane C. Schmidt, Deepak Sharma, Andreas Wolf, Aigars Znotins, Xavier Urbain, Oldřich Novotný, and Holger Kreckel&lt;br/&gt;&lt;span&gt;We present a novel technique to observe the optical manipulation of individual quantum states of H3+ ions stored inside a heavy-ion storage ring, where the excitation is detected by electron beam-assisted action spectroscopy. The transitions addressed here are chosen to enable multi-color spectrosco…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Wed Aug 19, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Marleen Maxton, Lukas Berger, Jonas Bechtel, Lucia Enzmann, Manfred Grieser, Florian Grussie, Jannis Himmelsbach, Leonard W. Isberner, Viviane C. Schmidt, Deepak Sharma, Andreas Wolf, Aigars Znotins, Xavier Urbain, Oldřich Novotný, and Holger Kreckel</p><span>We present a novel technique to observe the optical manipulation of individual quantum states of H3+ ions stored inside a heavy-ion storage ring, where the excitation is detected by electron beam-assisted action spectroscopy. The transitions addressed here are chosen to enable multi-color spectrosco…</span><br/><p>[Phys. Rev. Research] Published Wed Aug 19, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Population pumping of vibrational and rotational quantum states in the triatomic hydrogen ion observed by electron-beam-assisted high-resolution spectroscopy&lt;/span&gt;</dc:title>
    <dc:creator>Marleen Maxton, Lukas Berger, Jonas Bechtel, Lucia Enzmann, Manfred Grieser, Florian Grussie, Jannis Himmelsbach, Leonard W. Isberner, Viviane C. Schmidt, Deepak Sharma, Andreas Wolf, Aigars Znotins, Xavier Urbain, Oldřich Novotný, and Holger Kreckel</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/w9q1-yk99</dc:identifier>
    <prism:doi>10.1103/w9q1-yk99</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-19T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/3e072K23De01521ba2c33ff15366d0fc0f9ecc402</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/2d072Yd9Z6512e9f68cb479670e42ab2650b1c51f">
    <title>&lt;span&gt;Probing quantum-coherent dynamics with free electrons&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/2d072Yd9Z6512e9f68cb479670e42ab2650b1c51f</link>
    <description>Author(s): H. B. Crispin and N. Talebi&lt;br/&gt;&lt;span&gt;Recent advances in time-resolved cathodoluminescence have enabled ultrafast studies of single emitters in quantum materials with femtosecond temporal resolution. Here, we develop a quantum theory modeling the dynamics of free electrons interacting with quantum emitters in arbitrary initial states. O…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 18, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): H. B. Crispin and N. Talebi</p><span>Recent advances in time-resolved cathodoluminescence have enabled ultrafast studies of single emitters in quantum materials with femtosecond temporal resolution. Here, we develop a quantum theory modeling the dynamics of free electrons interacting with quantum emitters in arbitrary initial states. O…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 18, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Probing quantum-coherent dynamics with free electrons&lt;/span&gt;</dc:title>
    <dc:creator>H. B. Crispin and N. Talebi</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/skds-z6c5</dc:identifier>
    <prism:doi>10.1103/skds-z6c5</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-18T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/2d072Yd9Z6512e9f68cb479670e42ab2650b1c51f</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/c507fK69D231c61ac1c62987d5060954a2b9adebc">
    <title>&lt;span&gt;Optimality and annealing path planning of dynamical analog solvers&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/c507fK69D231c61ac1c62987d5060954a2b9adebc</link>
    <description>Author(s): Shu Zhou, K. Y. Michael Wong, Juntao Wang, David Shui Wing Hui, Daniel Ebler, and Jie Sun&lt;br/&gt;&lt;span&gt;Recently proposed analog solvers based on dynamical systems, such as Ising machines, are promising platforms for large-scale combinatorial optimization. Yet, given the heuristic nature of the field, there is very limited insight on optimality guarantees of the solvers, as well as how parameter sched…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 18, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Shu Zhou, K. Y. Michael Wong, Juntao Wang, David Shui Wing Hui, Daniel Ebler, and Jie Sun</p><span>Recently proposed analog solvers based on dynamical systems, such as Ising machines, are promising platforms for large-scale combinatorial optimization. Yet, given the heuristic nature of the field, there is very limited insight on optimality guarantees of the solvers, as well as how parameter sched…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 18, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Optimality and annealing path planning of dynamical analog solvers&lt;/span&gt;</dc:title>
    <dc:creator>Shu Zhou, K. Y. Michael Wong, Juntao Wang, David Shui Wing Hui, Daniel Ebler, and Jie Sun</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/m13m-ys1l</dc:identifier>
    <prism:doi>10.1103/m13m-ys1l</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-18T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/c507fK69D231c61ac1c62987d5060954a2b9adebc</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/f007cJacW241bf0452eb77e0883bd9774e04fc229">
    <title>&lt;span&gt;Diffuse laser cooling based on the 6P${}_{3/2}$ excited state of rubidium atoms via 420 nm blue light&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/f007cJacW241bf0452eb77e0883bd9774e04fc229</link>
    <description>Author(s): Jia Zhang, Xun Gao, Zheng Xiao, Xiaolei Guan, Ruihang Chen, Mengyuan Han, Tiantian Shi, and Jingbiao Chen&lt;br/&gt;&lt;span&gt;To date, the laser cooling of rubidium atoms has inevitably relied on 780~nm cooling light corresponding to the first excited state $5{P}_{3/2}$. Here, we demonstrate diffuse laser cooling of ${}^{87}Rb$ atoms using the 420~nm $5{S}_{1/2}→6{P}_{3/2}$ transition without a preceding 780 nm cooling sta…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 18, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Jia Zhang, Xun Gao, Zheng Xiao, Xiaolei Guan, Ruihang Chen, Mengyuan Han, Tiantian Shi, and Jingbiao Chen</p><span>To date, the laser cooling of rubidium atoms has inevitably relied on 780~nm cooling light corresponding to the first excited state <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mn>5</mn><msub><mstyle mathvariant="normal"><mi>P</mi></mstyle><mrow><mn>3</mn><mi>/</mi><mn>2</mn></mrow></msub></mrow></math>. Here, we demonstrate diffuse laser cooling of <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><msup><mi></mi><mn>87</mn></msup><mstyle mathvariant="normal"><mi>R</mi><mi>b</mi></mstyle></mrow></math> atoms using the 420~nm <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>6</mn><msub><mstyle mathvariant="normal"><mi>P</mi></mstyle><mrow><mn>3</mn><mi>/</mi><mn>2</mn></mrow></msub></mrow></math> transition without a preceding 780 nm cooling stage. A high-power <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mn>420</mn><mspace width="0.222em"></mspace><mstyle mathvariant="normal"><mi>n</mi><mi>m</mi></mstyle></mrow></math> las…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 18, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Diffuse laser cooling based on the 6P${}_{3/2}$ excited state of rubidium atoms via 420 nm blue light&lt;/span&gt;</dc:title>
    <dc:creator>Jia Zhang, Xun Gao, Zheng Xiao, Xiaolei Guan, Ruihang Chen, Mengyuan Han, Tiantian Shi, and Jingbiao Chen</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/4jtk-471b</dc:identifier>
    <prism:doi>10.1103/4jtk-471b</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-18T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/f007cJacW241bf0452eb77e0883bd9774e04fc229</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/8a071Y2aA7011291e06a6d46109416d395e993bd3">
    <title>&lt;span&gt;Entanglement without quantum mechanics: Operational constraints on the quantum signature&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/8a071Y2aA7011291e06a6d46109416d395e993bd3</link>
    <description>Author(s): Samuel Schlegel, Borivoje Dakić, and Flavio Del Santo&lt;br/&gt;&lt;span&gt;Quantum entanglement is defined as nonseparability of density operators, yet experimental phasespace statistics alone cannot distinguish classical from quantum sources, so classical data can be used to violate entanglement inequalities. Imposing uncertainty bounds, or full tomography, can map the sa…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 18, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Samuel Schlegel, Borivoje Dakić, and Flavio Del Santo</p><span>Quantum entanglement is defined as nonseparability of density operators, yet experimental phasespace statistics alone cannot distinguish classical from quantum sources, so classical data can be used to violate entanglement inequalities. Imposing uncertainty bounds, or full tomography, can map the sa…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 18, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Entanglement without quantum mechanics: Operational constraints on the quantum signature&lt;/span&gt;</dc:title>
    <dc:creator>Samuel Schlegel, Borivoje Dakić, and Flavio Del Santo</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/xdz9-x3zj</dc:identifier>
    <prism:doi>10.1103/xdz9-x3zj</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-18T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/8a071Y2aA7011291e06a6d46109416d395e993bd3</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/ef070Y3bU2e11e9fa8f423c3d9129871c5839fb84">
    <title>&lt;span&gt;Time-domain interference in photo-double-ionization revealing nonseparable two-electron wavefunctions&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/ef070Y3bU2e11e9fa8f423c3d9129871c5839fb84</link>
    <description>Author(s): Y. Hikosaka, T. Kaneyasu, S. Wada, H. Ota, M. Katoh, and F. Koike&lt;br/&gt;&lt;span&gt;We reveal interference patterns in photo double ionization spectra, produced by the interaction of argon atoms with an extreme-ultraviolet light wave packet in the form of a double pulse with variable pulse separation. These interference features provide direct evidence for non-separable two-electro…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 18, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Y. Hikosaka, T. Kaneyasu, S. Wada, H. Ota, M. Katoh, and F. Koike</p><span>We reveal interference patterns in photo double ionization spectra, produced by the interaction of argon atoms with an extreme-ultraviolet light wave packet in the form of a double pulse with variable pulse separation. These interference features provide direct evidence for non-separable two-electro…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 18, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Time-domain interference in photo-double-ionization revealing nonseparable two-electron wavefunctions&lt;/span&gt;</dc:title>
    <dc:creator>Y. Hikosaka, T. Kaneyasu, S. Wada, H. Ota, M. Katoh, and F. Koike</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/x7zf-dx8m</dc:identifier>
    <prism:doi>10.1103/x7zf-dx8m</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-18T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/ef070Y3bU2e11e9fa8f423c3d9129871c5839fb84</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/3d07eJ3bF9a1f500e2485735c8bece75ffac4e244">
    <title>&lt;span&gt;Exact nonequilibrium steady states of boundary driven circuit with XYZ gates&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/3d07eJ3bF9a1f500e2485735c8bece75ffac4e244</link>
    <description>Author(s): Xin Zhang, Tomaž Prosen, and Vladislav Popkov&lt;br/&gt;&lt;span&gt;We obtain the exact many-body density operator of a boundary-driven XXZ quantum circuit via a spatially inhomogeneous matrix product Ansatz. The Ansatz has formally infinite bond-dimension and generalizes authors previous construction for the XXZ interactions. The boundary qubits are coupled to rese…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 18, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Xin Zhang, Tomaž Prosen, and Vladislav Popkov</p><span>We obtain the exact many-body density operator of a boundary-driven XXZ quantum circuit via a spatially inhomogeneous matrix product Ansatz. The Ansatz has formally infinite bond-dimension and generalizes authors previous construction for the XXZ interactions. The boundary qubits are coupled to rese…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 18, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Exact nonequilibrium steady states of boundary driven circuit with XYZ gates&lt;/span&gt;</dc:title>
    <dc:creator>Xin Zhang, Tomaž Prosen, and Vladislav Popkov</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/2v8p-lyh5</dc:identifier>
    <prism:doi>10.1103/2v8p-lyh5</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-18T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/3d07eJ3bF9a1f500e2485735c8bece75ffac4e244</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/9e07bD82A9118801718d7d56f8fa5d397a2b507bf">
    <title>&lt;span&gt;Information transport and transport-induced entanglement in open fermion chains&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/9e07bD82A9118801718d7d56f8fa5d397a2b507bf</link>
    <description>Author(s): Andrea Nava, Claudia Artiaco, Yuval Gefen, Igor Gornyi, Mikheil Tsitsishvili, Alex Zazunov, and Reinhold Egger&lt;br/&gt;&lt;span&gt;Understanding the entanglement dynamics in quantum many-body systems under steady-state transport conditions is an actively pursued challenging topic. Hydrodynamic equations, akin to transport equations for charge or heat, would be of great interest but face severe challenges because of the inherent…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 18, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Andrea Nava, Claudia Artiaco, Yuval Gefen, Igor Gornyi, Mikheil Tsitsishvili, Alex Zazunov, and Reinhold Egger</p><span>Understanding the entanglement dynamics in quantum many-body systems under steady-state transport conditions is an actively pursued challenging topic. Hydrodynamic equations, akin to transport equations for charge or heat, would be of great interest but face severe challenges because of the inherent…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 18, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Information transport and transport-induced entanglement in open fermion chains&lt;/span&gt;</dc:title>
    <dc:creator>Andrea Nava, Claudia Artiaco, Yuval Gefen, Igor Gornyi, Mikheil Tsitsishvili, Alex Zazunov, and Reinhold Egger</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/5dks-395l</dc:identifier>
    <prism:doi>10.1103/5dks-395l</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-18T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/9e07bD82A9118801718d7d56f8fa5d397a2b507bf</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/4f07aJ2dG401a70ca4c912e0a14719c0f4da00fe3">
    <title>&lt;span&gt;Entanglement structure across ${ℤ}_{n}$ phase transitions in one-dimensional Rydberg atom arrays&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/4f07aJ2dG401a70ca4c912e0a14719c0f4da00fe3</link>
    <description>Author(s): Hyeonjun Yeo, Kabgyun Jeong, and Hyunchul Nha&lt;br/&gt;&lt;span&gt;Multipartite quantum entanglement plays a crucial role in the emergence of different quantum phases and their transitions in quantum many-body systems. It is of general interest to know what sort of analysis on quantum entanglement can bring us a profound insight to understand the rich dynamics of q…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 18, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Hyeonjun Yeo, Kabgyun Jeong, and Hyunchul Nha</p><span>Multipartite quantum entanglement plays a crucial role in the emergence of different quantum phases and their transitions in quantum many-body systems. It is of general interest to know what sort of analysis on quantum entanglement can bring us a profound insight to understand the rich dynamics of q…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 18, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Entanglement structure across ${ℤ}_{n}$ phase transitions in one-dimensional Rydberg atom arrays&lt;/span&gt;</dc:title>
    <dc:creator>Hyeonjun Yeo, Kabgyun Jeong, and Hyunchul Nha</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/8zrf-chts</dc:identifier>
    <prism:doi>10.1103/8zrf-chts</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-18T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/4f07aJ2dG401a70ca4c912e0a14719c0f4da00fe3</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/ce070Y66X621ab92643224c349c456a6d1ba474c2">
    <title>&lt;span&gt;Emulating isomerization with two-dimensional Coulomb crystals&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/ce070Y66X621ab92643224c349c456a6d1ba474c2</link>
    <description>Author(s): Naoto Mizukami, Gabriele Gatta, Lucia Duca, and Carlo Sias&lt;br/&gt;&lt;span&gt;Isomerization is a fundamental process in chemistry. We use a two-dimensional Coulomb crystal to emulate molecular isomerization and characterize its physical mechanisms. In our molecular analogue, the externally controlled confining potential determines the crystal’s potential energy surface (PES),…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 18, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Naoto Mizukami, Gabriele Gatta, Lucia Duca, and Carlo Sias</p><span>Isomerization is a fundamental process in chemistry. We use a two-dimensional Coulomb crystal to emulate molecular isomerization and characterize its physical mechanisms. In our molecular analogue, the externally controlled confining potential determines the crystal’s potential energy surface (PES),…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 18, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Emulating isomerization with two-dimensional Coulomb crystals&lt;/span&gt;</dc:title>
    <dc:creator>Naoto Mizukami, Gabriele Gatta, Lucia Duca, and Carlo Sias</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/bpjf-p1yk</dc:identifier>
    <prism:doi>10.1103/bpjf-p1yk</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-18T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/ce070Y66X621ab92643224c349c456a6d1ba474c2</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/d7075J3eFc71a702f2ed1408dd729b2a8ada19b6a">
    <title>&lt;span&gt;Thermodynamic efficiency of self-organization in nonequilibrium steady states&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/d7075J3eFc71a702f2ed1408dd729b2a8ada19b6a</link>
    <description>Author(s): Qianyang Chen and Mikhail Prokopenko&lt;br/&gt;&lt;span&gt;Active matter generates order or patterns through nonequilibrium dynamics. An open research challenge is to determine how efficiently a nonequilibrium self-organising system can convert consumed energy into macroscopic order. We study an information-theoretic quantity that directly addresses this ch…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 18, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Qianyang Chen and Mikhail Prokopenko</p><span>Active matter generates order or patterns through nonequilibrium dynamics. An open research challenge is to determine how efficiently a nonequilibrium self-organising system can convert consumed energy into macroscopic order. We study an information-theoretic quantity that directly addresses this ch…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 18, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Thermodynamic efficiency of self-organization in nonequilibrium steady states&lt;/span&gt;</dc:title>
    <dc:creator>Qianyang Chen and Mikhail Prokopenko</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/zjjd-gr1b</dc:identifier>
    <prism:doi>10.1103/zjjd-gr1b</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-18T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/d7075J3eFc71a702f2ed1408dd729b2a8ada19b6a</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/dd076JdfDae1eb08d27c1b9251e4b07ab6271e8f7">
    <title>&lt;span&gt;Droplet clustering signatures of entrainment in clouds&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/dd076JdfDae1eb08d27c1b9251e4b07ab6271e8f7</link>
    <description>Author(s): Suryadev Pratap Singh, Michael L. Larsen, Jesse C. Anderson, Hamed Fahandezh Sadi, Jae Min Yeom, Will Cantrell, and Raymond A. Shaw&lt;br/&gt;&lt;span&gt;The spatial distribution of cloud droplets is relevant for various microphysical processes, such as condensational growth, collision-coalescence, riming and aggregation, and radiative transfer. Cloud droplets and other hydrometeors exhibit clustering at dissipation scales and above due to turbulence…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 18, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Suryadev Pratap Singh, Michael L. Larsen, Jesse C. Anderson, Hamed Fahandezh Sadi, Jae Min Yeom, Will Cantrell, and Raymond A. Shaw</p><span>The spatial distribution of cloud droplets is relevant for various microphysical processes, such as condensational growth, collision-coalescence, riming and aggregation, and radiative transfer. Cloud droplets and other hydrometeors exhibit clustering at dissipation scales and above due to turbulence…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 18, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Droplet clustering signatures of entrainment in clouds&lt;/span&gt;</dc:title>
    <dc:creator>Suryadev Pratap Singh, Michael L. Larsen, Jesse C. Anderson, Hamed Fahandezh Sadi, Jae Min Yeom, Will Cantrell, and Raymond A. Shaw</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/4hrw-nf7t</dc:identifier>
    <prism:doi>10.1103/4hrw-nf7t</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-18T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/dd076JdfDae1eb08d27c1b9251e4b07ab6271e8f7</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/c2075J19D7b1cf0ea2fe5da911e424d9b2bd23eed">
    <title>&lt;span&gt;Quantum sensing in the presence of pulse errors and qubit leakage&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/c2075J19D7b1cf0ea2fe5da911e424d9b2bd23eed</link>
    <description>Author(s): David M. Lancaster, Muhammad Ali Shahbaz, Hamed Goli Yousefabad, Sanway Chatterjee, Eegan Ram, and Jonathan D. Weinstein&lt;br/&gt;&lt;span&gt;Using both simulation and experiment, we investigate the robustness of dynamical decoupling sequences to pulse errors: rotation errors and detuning errors. Whereas prior work examined the effect of errors on coherence times, here we show that quantum sensing can be affected by pulse errors in dramat…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 18, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): David M. Lancaster, Muhammad Ali Shahbaz, Hamed Goli Yousefabad, Sanway Chatterjee, Eegan Ram, and Jonathan D. Weinstein</p><span>Using both simulation and experiment, we investigate the robustness of dynamical decoupling sequences to pulse errors: rotation errors and detuning errors. Whereas prior work examined the effect of errors on coherence times, here we show that quantum sensing can be affected by pulse errors in dramat…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 18, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Quantum sensing in the presence of pulse errors and qubit leakage&lt;/span&gt;</dc:title>
    <dc:creator>David M. Lancaster, Muhammad Ali Shahbaz, Hamed Goli Yousefabad, Sanway Chatterjee, Eegan Ram, and Jonathan D. Weinstein</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/lb3n-qply</dc:identifier>
    <prism:doi>10.1103/lb3n-qply</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-18T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/c2075J19D7b1cf0ea2fe5da911e424d9b2bd23eed</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/9f075YebC191669cf32e15005aa2ea0f661347c93">
    <title>&lt;span&gt;Fluctuation-response design rules for nonequilibrium flows&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/9f075YebC191669cf32e15005aa2ea0f661347c93</link>
    <description>Author(s): Ying-Jen Yang and Ken A. Dill&lt;br/&gt;&lt;span&gt;Biomolecular machines operate as stochastic flows on networks. Here, we develop a principled approach to where local transition rates are systematically tuned to achieve global dynamical objectives. Based on the fluctuation-response duality in Caliber Force Theory, our formalism unifies existing non…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 18, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Ying-Jen Yang and Ken A. Dill</p><span>Biomolecular machines operate as stochastic flows on networks. Here, we develop a principled approach to where local transition rates are systematically tuned to achieve global dynamical objectives. Based on the fluctuation-response duality in Caliber Force Theory, our formalism unifies existing non…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 18, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Fluctuation-response design rules for nonequilibrium flows&lt;/span&gt;</dc:title>
    <dc:creator>Ying-Jen Yang and Ken A. Dill</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/g8rc-615y</dc:identifier>
    <prism:doi>10.1103/g8rc-615y</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-18T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/9f075YebC191669cf32e15005aa2ea0f661347c93</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/b607dYd4Zc51dc9d80e84221a0515c65b51f2ee99">
    <title>&lt;span&gt;Shot-resolved transmission gating reveals relativistic transparency onset in laser-driven proton acceleration&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/b607dYd4Zc51dc9d80e84221a0515c65b51f2ee99</link>
    <description>Author(s): Marvin E. P. Umlandt, Milenko Vescovi, Nicholas P. Dover, Ginevra Casati, Hiromitsu Kiriyama, Thomas Kluge, Akira Kon, Kotaro Kondo, Chang Liu, Josefine Metzkes-Ng, Zulfikar Najmudin, Franziska Paschke-Bruehl, Richard Pausch, Thomas Püschel, Vidisha Rana, Hironao Sakaki, Ulrich Schramm, Pengjie Wang, Nuo Xu, Tim Ziegler, Mamiko Nishiuchi, and Karl Zeil&lt;br/&gt;&lt;span&gt;We investigate proton acceleration in the relativistic transparency regime using ultrathin foils irradiated by petawatt-class laser pulses, achieving proton energies exceeding 80 MeV. Shot-resolved analysis of transmitted spectra reveals that temporal gating at the onset of relativistically induced …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 18, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Marvin E. P. Umlandt, Milenko Vescovi, Nicholas P. Dover, Ginevra Casati, Hiromitsu Kiriyama, Thomas Kluge, Akira Kon, Kotaro Kondo, Chang Liu, Josefine Metzkes-Ng, Zulfikar Najmudin, Franziska Paschke-Bruehl, Richard Pausch, Thomas Püschel, Vidisha Rana, Hironao Sakaki, Ulrich Schramm, Pengjie Wang, Nuo Xu, Tim Ziegler, Mamiko Nishiuchi, and Karl Zeil</p><span>We investigate proton acceleration in the relativistic transparency regime using ultrathin foils irradiated by petawatt-class laser pulses, achieving proton energies exceeding 80 MeV. Shot-resolved analysis of transmitted spectra reveals that temporal gating at the onset of relativistically induced …</span><br/><p>[Phys. Rev. Research] Published Tue Aug 18, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Shot-resolved transmission gating reveals relativistic transparency onset in laser-driven proton acceleration&lt;/span&gt;</dc:title>
    <dc:creator>Marvin E. P. Umlandt, Milenko Vescovi, Nicholas P. Dover, Ginevra Casati, Hiromitsu Kiriyama, Thomas Kluge, Akira Kon, Kotaro Kondo, Chang Liu, Josefine Metzkes-Ng, Zulfikar Najmudin, Franziska Paschke-Bruehl, Richard Pausch, Thomas Püschel, Vidisha Rana, Hironao Sakaki, Ulrich Schramm, Pengjie Wang, Nuo Xu, Tim Ziegler, Mamiko Nishiuchi, and Karl Zeil</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/3cms-dn9p</dc:identifier>
    <prism:doi>10.1103/3cms-dn9p</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-18T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/b607dYd4Zc51dc9d80e84221a0515c65b51f2ee99</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/5c074JfdG1912306e46a12a3b9b5bfa2d82940e09">
    <title>&lt;span&gt;Attosecond photoelectron interferometry of resonant structures between the Ar spin-orbit-split thresholds&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/5c074JfdG1912306e46a12a3b9b5bfa2d82940e09</link>
    <description>Author(s): J. K. Wood, C. Marante, D. Biswas, L. Argenti, and A. Sandhu&lt;br/&gt;&lt;span&gt;Resolving the ultrafast decay of metastable electronic states into channels associated with spin-orbit-split ionization thresholds is a long-standing goal of attosecond photoelectron spectroscopy. Here, we use a variant of the Rainbow RABBITT (Reconstruction of Attosecond Beating by Interference of …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 18, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): J. K. Wood, C. Marante, D. Biswas, L. Argenti, and A. Sandhu</p><span>Resolving the ultrafast decay of metastable electronic states into channels associated with spin-orbit-split ionization thresholds is a long-standing goal of attosecond photoelectron spectroscopy. Here, we use a variant of the Rainbow RABBITT (Reconstruction of Attosecond Beating by Interference of …</span><br/><p>[Phys. Rev. Research] Published Tue Aug 18, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Attosecond photoelectron interferometry of resonant structures between the Ar spin-orbit-split thresholds&lt;/span&gt;</dc:title>
    <dc:creator>J. K. Wood, C. Marante, D. Biswas, L. Argenti, and A. Sandhu</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/hz3c-jn2g</dc:identifier>
    <prism:doi>10.1103/hz3c-jn2g</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-18T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/5c074JfdG1912306e46a12a3b9b5bfa2d82940e09</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/f8079J35Dfe15b07623340e39aba87c5ca58e12e7">
    <title>&lt;span&gt;Improving absorption spectroscopy measurements in attosecond x-ray free electron laser experiments using machine learning&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/f8079J35Dfe15b07623340e39aba87c5ca58e12e7</link>
    <description>Author(s): K. Hu, O. G. Alexander, F. Egun, and J. P. Marangos&lt;br/&gt;&lt;span&gt;X-ray free-electron lasers (XFELs) provide ultrashort, high-brightness pulses for probing matter on femtosecond and attosecond timescales, but their stochastic shot-to-shot fluctuations make X-ray absorption spectroscopy (XAS) challenging, as both incident and transmitted spectra are required to be …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Mon Aug 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): K. Hu, O. G. Alexander, F. Egun, and J. P. Marangos</p><span>X-ray free-electron lasers (XFELs) provide ultrashort, high-brightness pulses for probing matter on femtosecond and attosecond timescales, but their stochastic shot-to-shot fluctuations make X-ray absorption spectroscopy (XAS) challenging, as both incident and transmitted spectra are required to be …</span><br/><p>[Phys. Rev. Research] Published Mon Aug 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Improving absorption spectroscopy measurements in attosecond x-ray free electron laser experiments using machine learning&lt;/span&gt;</dc:title>
    <dc:creator>K. Hu, O. G. Alexander, F. Egun, and J. P. Marangos</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/8vc5-pt1f</dc:identifier>
    <prism:doi>10.1103/8vc5-pt1f</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/f8079J35Dfe15b07623340e39aba87c5ca58e12e7</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/a7075J06Z931940b722e7638c8a53b2c511bdee97">
    <title>&lt;span&gt;Size control guidelines for chemically active droplets&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/a7075J06Z931940b722e7638c8a53b2c511bdee97</link>
    <description>Author(s): Guido L. A. Kusters and David Zwicker&lt;br/&gt;&lt;span&gt;Biological cells and synthetic analogues use liquid-liquid phase separation to dynamically compartmentalize their environment for various applications. In many cases, multiple droplets need to coexist, and their size needs to be controlled, which is challenging because large droplets tend to grow at…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Mon Aug 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Guido L. A. Kusters and David Zwicker</p><span>Biological cells and synthetic analogues use liquid-liquid phase separation to dynamically compartmentalize their environment for various applications. In many cases, multiple droplets need to coexist, and their size needs to be controlled, which is challenging because large droplets tend to grow at…</span><br/><p>[Phys. Rev. Research] Published Mon Aug 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Size control guidelines for chemically active droplets&lt;/span&gt;</dc:title>
    <dc:creator>Guido L. A. Kusters and David Zwicker</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/m3xb-zwwr</dc:identifier>
    <prism:doi>10.1103/m3xb-zwwr</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/a7075J06Z931940b722e7638c8a53b2c511bdee97</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/a9074Y27Da32b80a15c541b183b5f8f5914b025c5">
    <title>&lt;span&gt;Experimental limit on neutron orbital angular momentum detection using polarized ${}^{3}$He&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/a9074Y27Da32b80a15c541b183b5f8f5914b025c5</link>
    <description>Author(s): D. Sarenac, O. Lailey, D. V. Garrad, P. R. Vadnere, N. Shentevski, C. W. Clark, D. G. Cory, J. P. Cotter, H. Ekinci, M. G. Huber, J. W. Paster, Y. Tzeng, D. Alba Venero, and D. A. Pushin&lt;br/&gt;&lt;span&gt;A recent proposal suggested that neutron orbital angular momentum (OAM) states could be detected via spin-polarized absorption in polarized ${}^{3}$He, with predicted cross-section variations linked to the neutron’s OAM. We experimentally tested this hypothesis using spin-polarized neutron beams wit…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Mon Aug 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): D. Sarenac, O. Lailey, D. V. Garrad, P. R. Vadnere, N. Shentevski, C. W. Clark, D. G. Cory, J. P. Cotter, H. Ekinci, M. G. Huber, J. W. Paster, Y. Tzeng, D. Alba Venero, and D. A. Pushin</p><span>A recent proposal suggested that neutron orbital angular momentum (OAM) states could be detected via spin-polarized absorption in polarized <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><msup><mi></mi><mn>3</mn></msup></math>He, with predicted cross-section variations linked to the neutron’s OAM. We experimentally tested this hypothesis using spin-polarized neutron beams with OAM =…</span><br/><p>[Phys. Rev. Research] Published Mon Aug 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Experimental limit on neutron orbital angular momentum detection using polarized ${}^{3}$He&lt;/span&gt;</dc:title>
    <dc:creator>D. Sarenac, O. Lailey, D. V. Garrad, P. R. Vadnere, N. Shentevski, C. W. Clark, D. G. Cory, J. P. Cotter, H. Ekinci, M. G. Huber, J. W. Paster, Y. Tzeng, D. Alba Venero, and D. A. Pushin</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/1mv3-khf8</dc:identifier>
    <prism:doi>10.1103/1mv3-khf8</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/a9074Y27Da32b80a15c541b183b5f8f5914b025c5</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/af072J70F251970b223100b174a699acde7c18d56">
    <title>&lt;span&gt;Entropy transport through a superfluid quantum point contact: A Keldysh field-theory approach&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/af072J70F251970b223100b174a699acde7c18d56</link>
    <description>Author(s): Davide Bertolusso, C. J. Bolech, and Thierry Giamarchi&lt;br/&gt;&lt;span&gt;We study the matter and entropy transport between two ultra-cold neutral Fermi-gas reservoirs linked by a quantum point contact under a chemical-potential gradient. We describe the two leads with a BCS mean-field model and derive the current-bias characteristics for both particle and entropy transpo…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Mon Aug 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Davide Bertolusso, C. J. Bolech, and Thierry Giamarchi</p><span>We study the matter and entropy transport between two ultra-cold neutral Fermi-gas reservoirs linked by a quantum point contact under a chemical-potential gradient. We describe the two leads with a BCS mean-field model and derive the current-bias characteristics for both particle and entropy transpo…</span><br/><p>[Phys. Rev. Research] Published Mon Aug 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Entropy transport through a superfluid quantum point contact: A Keldysh field-theory approach&lt;/span&gt;</dc:title>
    <dc:creator>Davide Bertolusso, C. J. Bolech, and Thierry Giamarchi</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/rxbq-74f6</dc:identifier>
    <prism:doi>10.1103/rxbq-74f6</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/af072J70F251970b223100b174a699acde7c18d56</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/5507bJd4De610c03121b0fc17a8d1a59f4b4a4c3e">
    <title>&lt;span&gt;Cross-order induced behaviors in contagion dynamics on higher-order networks&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/5507bJd4De610c03121b0fc17a8d1a59f4b4a4c3e</link>
    <description>Author(s): Kaloyan Danovski, Sandro Meloni, and Michele Starnini&lt;br/&gt;&lt;span&gt;Recent studies have shown that novel collective behaviors emerge in complex systems due to higher-order interactions. However, the way in which the structural correlations of these interactions shape such behaviors remains a significant gap in current research. To address this, we use signatures of …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Fri Aug 14, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Kaloyan Danovski, Sandro Meloni, and Michele Starnini</p><span>Recent studies have shown that novel collective behaviors emerge in complex systems due to higher-order interactions. However, the way in which the structural correlations of these interactions shape such behaviors remains a significant gap in current research. To address this, we use signatures of …</span><br/><p>[Phys. Rev. Research] Published Fri Aug 14, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Cross-order induced behaviors in contagion dynamics on higher-order networks&lt;/span&gt;</dc:title>
    <dc:creator>Kaloyan Danovski, Sandro Meloni, and Michele Starnini</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/pngx-s5xx</dc:identifier>
    <prism:doi>10.1103/pngx-s5xx</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-14T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/5507bJd4De610c03121b0fc17a8d1a59f4b4a4c3e</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/c407aJ94Ee512601d2b53dd8571436d4ba90b3f6c">
    <title>&lt;span&gt;Optical Su-Schrieffer-Heeger model on a triangular lattice&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/c407aJ94Ee512601d2b53dd8571436d4ba90b3f6c</link>
    <description>Author(s): Max Casebolt, Sohan Malkaruge Costa, Benjamin Cohen-Stead, Richard Scalettar, and Steven Johnston&lt;br/&gt;&lt;span&gt;We study the triangular lattice optical Su-Schrieffer-Heeger (SSH) model using determinant quantum Monte Carlo. By varying the model’s carrier concentration, electron-phonon coupling strength, and phonon energy $Ω$, we identify two doping regimes of interest. At one-quarter filling ($⟨n⟩=0.5$), corr…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 13, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Max Casebolt, Sohan Malkaruge Costa, Benjamin Cohen-Stead, Richard Scalettar, and Steven Johnston</p><span>We study the triangular lattice optical Su-Schrieffer-Heeger (SSH) model using determinant quantum Monte Carlo. By varying the model’s carrier concentration, electron-phonon coupling strength, and phonon energy <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mi>Ω</mi></math>, we identify two doping regimes of interest. At one-quarter filling (<math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mo stretchy="false" form="prefix">⟨</mo><mi>n</mi><mo stretchy="false" form="postfix">⟩</mo><mo>=</mo><mn>0.5</mn></mrow></math>), correspo…</span><br/><p>[Phys. Rev. Research] Published Thu Aug 13, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Optical Su-Schrieffer-Heeger model on a triangular lattice&lt;/span&gt;</dc:title>
    <dc:creator>Max Casebolt, Sohan Malkaruge Costa, Benjamin Cohen-Stead, Richard Scalettar, and Steven Johnston</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/xm7l-blnh</dc:identifier>
    <prism:doi>10.1103/xm7l-blnh</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-13T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/c407aJ94Ee512601d2b53dd8571436d4ba90b3f6c</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/34072Y9fZ4c19d9810033993706eaf59aef2ff1fc">
    <title>&lt;span&gt;Universal classification of Weyl semimetals via sixteen irreducible Weyl molecules&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/34072Y9fZ4c19d9810033993706eaf59aef2ff1fc</link>
    <description>Author(s): Ke-Xin Pang, Hui-Jing Zheng, and Yan Gao&lt;br/&gt;&lt;span&gt;Governed by the Nielsen-Ninomiya theorem, Weyl points (WPs) function as topological monopoles that cannot exist in isolation but must form charge-neutral assemblies in the momentum space of crystals. While these WPs are locally characterized by quantized chiral charges, the finite generating family …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 13, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Ke-Xin Pang, Hui-Jing Zheng, and Yan Gao</p><span>Governed by the Nielsen-Ninomiya theorem, Weyl points (WPs) function as topological monopoles that cannot exist in isolation but must form charge-neutral assemblies in the momentum space of crystals. While these WPs are locally characterized by quantized chiral charges, the finite generating family …</span><br/><p>[Phys. Rev. Research] Published Thu Aug 13, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Universal classification of Weyl semimetals via sixteen irreducible Weyl molecules&lt;/span&gt;</dc:title>
    <dc:creator>Ke-Xin Pang, Hui-Jing Zheng, and Yan Gao</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/qwrz-9xm9</dc:identifier>
    <prism:doi>10.1103/qwrz-9xm9</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-13T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/34072Y9fZ4c19d9810033993706eaf59aef2ff1fc</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/45074K60Y941430169bb091511af852b7c06dec80">
    <title>&lt;span&gt;Boltzmann sampling of frustrated ${J}_{1}$-${J}_{2}$ Ising models with programmable quantum annealers&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/45074K60Y941430169bb091511af852b7c06dec80</link>
    <description>Author(s): Elijah Pelofske&lt;br/&gt;&lt;span&gt;One of the surprising, and potentially very useful, capabilities of analog quantum computers, such as D-Wave quantum annealers, is sampling from the Boltzmann, or Gibbs, distribution defined by a classical Hamiltonian. In this study, we thoroughly examine the ability of D-Wave quantum annealers to s…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 13, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Elijah Pelofske</p><span>One of the surprising, and potentially very useful, capabilities of analog quantum computers, such as D-Wave quantum annealers, is sampling from the Boltzmann, or Gibbs, distribution defined by a classical Hamiltonian. In this study, we thoroughly examine the ability of D-Wave quantum annealers to s…</span><br/><p>[Phys. Rev. Research] Published Thu Aug 13, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Boltzmann sampling of frustrated ${J}_{1}$-${J}_{2}$ Ising models with programmable quantum annealers&lt;/span&gt;</dc:title>
    <dc:creator>Elijah Pelofske</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/2xc3-815x</dc:identifier>
    <prism:doi>10.1103/2xc3-815x</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-13T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/45074K60Y941430169bb091511af852b7c06dec80</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/06079Y06Zf91369327cf2a184d07c641ea58759f2">
    <title>&lt;span&gt;Hong-Ou-Mandel two-photon X-ray states&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/06079Y06Zf91369327cf2a184d07c641ea58759f2</link>
    <description>Author(s): Liam T. Powers and Stephen M. Durbin&lt;br/&gt;&lt;span&gt;We have observed Hong-Ou-Mandel interference of high-brightness synchrotron x-rays with a Mach-Zehnder interferometer, yielding two-photon states of potential interest for x-ray quantum optics.&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 13, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Liam T. Powers and Stephen M. Durbin</p><span>We have observed Hong-Ou-Mandel interference of high-brightness synchrotron x-rays with a Mach-Zehnder interferometer, yielding two-photon states of potential interest for x-ray quantum optics.</span><br/><p>[Phys. Rev. Research] Published Thu Aug 13, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Hong-Ou-Mandel two-photon X-ray states&lt;/span&gt;</dc:title>
    <dc:creator>Liam T. Powers and Stephen M. Durbin</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/p759-6v4q</dc:identifier>
    <prism:doi>10.1103/p759-6v4q</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-13T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/06079Y06Zf91369327cf2a184d07c641ea58759f2</prism:url>
    <dc:subject>Letters</dc:subject>
    <prism:section>Letters</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/8f075D1cZf41fb09128e62f025060b5be9d940981">
    <title>&lt;span&gt;Expanding the neutral-atom gate set: Native iSWAP and exchange gates from dipolar Rydberg interactions&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/8f075D1cZf41fb09128e62f025060b5be9d940981</link>
    <description>Author(s): Pedro Ildefonso, Andrew Byun, Aleksei Konovalov, Javad Kazemi, Michael Schuler, and Wolfgang Lechner&lt;br/&gt;&lt;span&gt;We present a native realization of iSWAP and parameterized gates for neutral-atom quantum processing units. Our approach leverages strong dipole-dipole interactions between two different dipole-coupled Rydberg states, employing optimal control techniques to design high-fidelity, time-efficient gate …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 13, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Pedro Ildefonso, Andrew Byun, Aleksei Konovalov, Javad Kazemi, Michael Schuler, and Wolfgang Lechner</p><span>We present a native realization of iSWAP and parameterized gates for neutral-atom quantum processing units. Our approach leverages strong dipole-dipole interactions between two different dipole-coupled Rydberg states, employing optimal control techniques to design high-fidelity, time-efficient gate …</span><br/><p>[Phys. Rev. Research] Published Thu Aug 13, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Expanding the neutral-atom gate set: Native iSWAP and exchange gates from dipolar Rydberg interactions&lt;/span&gt;</dc:title>
    <dc:creator>Pedro Ildefonso, Andrew Byun, Aleksei Konovalov, Javad Kazemi, Michael Schuler, and Wolfgang Lechner</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/z46h-mgh4</dc:identifier>
    <prism:doi>10.1103/z46h-mgh4</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-13T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/8f075D1cZf41fb09128e62f025060b5be9d940981</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/6007cJf9F831ad05b2277248357be31225e4bee02">
    <title>&lt;span&gt;Gauge-invariant quantum minimally entangled typical thermal states with mutually unbiased physical bases for $ℤ$${}_{2}$ lattice gauge theories at finite temperature and density&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/6007cJf9F831ad05b2277248357be31225e4bee02</link>
    <description>Author(s): Reita Maeno&lt;br/&gt;&lt;span&gt;In quantum computations of gauge theories at finite temperature and finite density, enforcing Gauss’’s law for all states contributing to the thermal ensemble is a nontrivial challenge. In this work, we adapt the Quantum Minimally Entangled Typical Thermal States (QMETTS) algorithm to Z2 gauge-const…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 13, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Reita Maeno</p><span>In quantum computations of gauge theories at finite temperature and finite density, enforcing Gauss’’s law for all states contributing to the thermal ensemble is a nontrivial challenge. In this work, we adapt the Quantum Minimally Entangled Typical Thermal States (QMETTS) algorithm to Z2 gauge-const…</span><br/><p>[Phys. Rev. Research] Published Thu Aug 13, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Gauge-invariant quantum minimally entangled typical thermal states with mutually unbiased physical bases for $ℤ$${}_{2}$ lattice gauge theories at finite temperature and density&lt;/span&gt;</dc:title>
    <dc:creator>Reita Maeno</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/qyj2-97tw</dc:identifier>
    <prism:doi>10.1103/qyj2-97tw</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-13T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/6007cJf9F831ad05b2277248357be31225e4bee02</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/9a070Je4A661b30ca2090a08c31c2efb4349df635">
    <title>&lt;span&gt;Entanglement thresholds for sequential nonlocality sharing in star networks&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/9a070Je4A661b30ca2090a08c31c2efb4349df635</link>
    <description>Author(s): Ming-Xiao Li, Yuqi Li, Rui-Bin Xu, Mo-Ran Zhu, Haitao Ma, Chang-Yue Zhang, and Zhu-Jun Zheng&lt;br/&gt;&lt;span&gt;Quantum networks promise scalable distributed quantum information processing. Realizing this potential depends critically on the efficient use of nonclassical resources. Sequential sharing of quantum nonlocality provides a resource-efficient route for recycling entanglement across multiple observers…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Thu Aug 13, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Ming-Xiao Li, Yuqi Li, Rui-Bin Xu, Mo-Ran Zhu, Haitao Ma, Chang-Yue Zhang, and Zhu-Jun Zheng</p><span>Quantum networks promise scalable distributed quantum information processing. Realizing this potential depends critically on the efficient use of nonclassical resources. Sequential sharing of quantum nonlocality provides a resource-efficient route for recycling entanglement across multiple observers…</span><br/><p>[Phys. Rev. Research] Published Thu Aug 13, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Entanglement thresholds for sequential nonlocality sharing in star networks&lt;/span&gt;</dc:title>
    <dc:creator>Ming-Xiao Li, Yuqi Li, Rui-Bin Xu, Mo-Ran Zhu, Haitao Ma, Chang-Yue Zhang, and Zhu-Jun Zheng</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/26rt-yvpn</dc:identifier>
    <prism:doi>10.1103/26rt-yvpn</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-13T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/9a070Je4A661b30ca2090a08c31c2efb4349df635</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/98074Y49Ob71dd80a6337f30743670384a2c49261">
    <title>&lt;span&gt;Separation of light ion species in the transition from shock-dominated to compressive inertial confinement fusion implosions&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/98074Y49Ob71dd80a6337f30743670384a2c49261</link>
    <description>Author(s): N. V. Kabadi, P. J. Adrian, T. Evans, M. Gatu Johnson, C. K. Li, F. H. Séguin, G. D. Sutcliffe, R. D. Petrasso, J. A. Frenje, C. Forrest, V. Yu Glebov, R. Janezic, and C. Stoeckl&lt;br/&gt;&lt;span&gt;A series of glass-shell D${}^{3}$He gas filled implosions was carried out on the OMEGA laser facility. In these experiments the thicknesses of the glass shells were varied from 4.2 to 9.4 um, producing implosions that spanned from shock to compression dominated emission. Data from several diagnostic…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Wed Aug 12, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): N. V. Kabadi, P. J. Adrian, T. Evans, M. Gatu Johnson, C. K. Li, F. H. Séguin, G. D. Sutcliffe, R. D. Petrasso, J. A. Frenje, C. Forrest, V. Yu Glebov, R. Janezic, and C. Stoeckl</p><span>A series of glass-shell D<math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><msup><mi></mi><mn>3</mn></msup></math>He gas filled implosions was carried out on the OMEGA laser facility. In these experiments the thicknesses of the glass shells were varied from 4.2 to 9.4 um, producing implosions that spanned from shock to compression dominated emission. Data from several diagnostics was u…</span><br/><p>[Phys. Rev. Research] Published Wed Aug 12, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Separation of light ion species in the transition from shock-dominated to compressive inertial confinement fusion implosions&lt;/span&gt;</dc:title>
    <dc:creator>N. V. Kabadi, P. J. Adrian, T. Evans, M. Gatu Johnson, C. K. Li, F. H. Séguin, G. D. Sutcliffe, R. D. Petrasso, J. A. Frenje, C. Forrest, V. Yu Glebov, R. Janezic, and C. Stoeckl</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/hzvv-p4d6</dc:identifier>
    <prism:doi>10.1103/hzvv-p4d6</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-12T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/98074Y49Ob71dd80a6337f30743670384a2c49261</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/ea077JcaG3512602e3d05668c8194c9f79047287a">
    <title>&lt;span&gt;Residual-squeezing mechanism of mismatch in inverse-squeezing Kennedy receivers&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/ea077JcaG3512602e3d05668c8194c9f79047287a</link>
    <description>Author(s): Enhao Bai, Fengkai Sun, Laiyuan Tong, Zhenrong Zhang, Tianyi Wu, Yang Ran, Zichao Zhou, Huankai Zhang, Jian Peng, Chen Dong, and Yaping Li&lt;br/&gt;&lt;span&gt;The discrimination of quantum states is fundamental to quantum information processing. Inverse-squeezing Kennedy (IS-Kennedy) receivers can outperform the coherent-state BPSK Helstrom benchmark at the same energy by converting transmitter-side squeezing into an effective coherent-state separation ga…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Wed Aug 12, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Enhao Bai, Fengkai Sun, Laiyuan Tong, Zhenrong Zhang, Tianyi Wu, Yang Ran, Zichao Zhou, Huankai Zhang, Jian Peng, Chen Dong, and Yaping Li</p><span>The discrimination of quantum states is fundamental to quantum information processing. Inverse-squeezing Kennedy (IS-Kennedy) receivers can outperform the coherent-state BPSK Helstrom benchmark at the same energy by converting transmitter-side squeezing into an effective coherent-state separation ga…</span><br/><p>[Phys. Rev. Research] Published Wed Aug 12, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Residual-squeezing mechanism of mismatch in inverse-squeezing Kennedy receivers&lt;/span&gt;</dc:title>
    <dc:creator>Enhao Bai, Fengkai Sun, Laiyuan Tong, Zhenrong Zhang, Tianyi Wu, Yang Ran, Zichao Zhou, Huankai Zhang, Jian Peng, Chen Dong, and Yaping Li</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/j5nb-ps1q</dc:identifier>
    <prism:doi>10.1103/j5nb-ps1q</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-12T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/ea077JcaG3512602e3d05668c8194c9f79047287a</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/01077Y83F4126203207c651958c0656a52074ade2">
    <title>&lt;span&gt;Stochastically perturbed billiards: Fingerprints of chaos and universality classes&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/01077Y83F4126203207c651958c0656a52074ade2</link>
    <description>Author(s): Roberto Artuso and Matteo Burlo&lt;br/&gt;&lt;span&gt;Billiards tables - a minimal model for particles moving in a confined region - are known to present classical (and quantum) different features according to their shape, ranging from strongly chaotic to integrable dynamics. Here we consider the role of a stochastic perturbation of the elastic reflect…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Wed Aug 12, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Roberto Artuso and Matteo Burlo</p><span>Billiards tables - a minimal model for particles moving in a confined region - are known to present classical (and quantum) different features according to their shape, ranging from strongly chaotic to integrable dynamics. Here we consider the role of a stochastic perturbation of the elastic reflect…</span><br/><p>[Phys. Rev. Research] Published Wed Aug 12, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Stochastically perturbed billiards: Fingerprints of chaos and universality classes&lt;/span&gt;</dc:title>
    <dc:creator>Roberto Artuso and Matteo Burlo</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/rxth-ltgq</dc:identifier>
    <prism:doi>10.1103/rxth-ltgq</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-12T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/01077Y83F4126203207c651958c0656a52074ade2</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/15076Y36G0614f9b25163324998e2591761dbe3a5">
    <title>&lt;span&gt;Asymmetric cortical mechanics shape epithelial cell geometry in organoids&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/15076Y36G0614f9b25163324998e2591761dbe3a5</link>
    <description>Author(s): Tristan Guyomar, Linjie Lu, Tetsuya Hiraiwa, and Daniel Riveline&lt;br/&gt;&lt;span&gt;Cell cortex is a thin sheet of actin cytoskeleton spanning cell boundaries with rich out-of-equilibrium dynamics. A theoretical description of the cortex as an active fluid enables to capture cell shapes dynamics in 3D epithelial tissues. However models integrated with calibration of parameters and …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Wed Aug 12, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Tristan Guyomar, Linjie Lu, Tetsuya Hiraiwa, and Daniel Riveline</p><span>Cell cortex is a thin sheet of actin cytoskeleton spanning cell boundaries with rich out-of-equilibrium dynamics. A theoretical description of the cortex as an active fluid enables to capture cell shapes dynamics in 3D epithelial tissues. However models integrated with calibration of parameters and …</span><br/><p>[Phys. Rev. Research] Published Wed Aug 12, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Asymmetric cortical mechanics shape epithelial cell geometry in organoids&lt;/span&gt;</dc:title>
    <dc:creator>Tristan Guyomar, Linjie Lu, Tetsuya Hiraiwa, and Daniel Riveline</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/rd8m-lcg6</dc:identifier>
    <prism:doi>10.1103/rd8m-lcg6</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-12T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/15076Y36G0614f9b25163324998e2591761dbe3a5</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/74077DadF261b30a21a2994324f07041f330a0e9d">
    <title>&lt;span&gt;Quantum-ready formulation for uncompromised data assimilation with high-rank covariances&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/74077DadF261b30a21a2994324f07041f330a0e9d</link>
    <description>Author(s): Takemasa Miyoshi&lt;br/&gt;&lt;span&gt;Data assimilation (DA) optimally fuses observational data with mathematical models, serving as a core computational framework for forecasting complex dynamical systems like the weather. Because manipulating large-scale high-rank error covariances is classically intractable, conventional DA is forced…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 11, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Takemasa Miyoshi</p><span>Data assimilation (DA) optimally fuses observational data with mathematical models, serving as a core computational framework for forecasting complex dynamical systems like the weather. Because manipulating large-scale high-rank error covariances is classically intractable, conventional DA is forced…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 11, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Quantum-ready formulation for uncompromised data assimilation with high-rank covariances&lt;/span&gt;</dc:title>
    <dc:creator>Takemasa Miyoshi</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/x91t-v327</dc:identifier>
    <prism:doi>10.1103/x91t-v327</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-11T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/74077DadF261b30a21a2994324f07041f330a0e9d</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/ad075Jf3D7b1da0902164ab124e27ddcce9e777db">
    <title>&lt;span&gt;Toward collinear laser spectroscopy of radioactive molecules utilizing in-trap-produced molecular ion beam&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/ad075Jf3D7b1da0902164ab124e27ddcce9e777db</link>
    <description>Author(s): W. C. Mei, S. J. Chen, X. F. Yang, J. H. Lv, D. Y. Chen, H. R. Hu, Y. F. Guo, Z. Yan, Y. P. Jing, C. Zhang, Y. P. Lin, T. X. Gao, X. Shen, S. W. Bai, R. F. Garcia Ruiz, J. Yang, and Y. L. Ye&lt;br/&gt;&lt;span&gt;Molecules containing short-lived isotopes, namely radioactive molecules, are among the most promising candidates for probing new physics beyond the Standard Model, although their production and spectroscopic measurements remain technically challenging. Here, we demonstrate an integrated methodology …&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 11, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): W. C. Mei, S. J. Chen, X. F. Yang, J. H. Lv, D. Y. Chen, H. R. Hu, Y. F. Guo, Z. Yan, Y. P. Jing, C. Zhang, Y. P. Lin, T. X. Gao, X. Shen, S. W. Bai, R. F. Garcia Ruiz, J. Yang, and Y. L. Ye</p><span>Molecules containing short-lived isotopes, namely radioactive molecules, are among the most promising candidates for probing new physics beyond the Standard Model, although their production and spectroscopic measurements remain technically challenging. Here, we demonstrate an integrated methodology …</span><br/><p>[Phys. Rev. Research] Published Tue Aug 11, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Toward collinear laser spectroscopy of radioactive molecules utilizing in-trap-produced molecular ion beam&lt;/span&gt;</dc:title>
    <dc:creator>W. C. Mei, S. J. Chen, X. F. Yang, J. H. Lv, D. Y. Chen, H. R. Hu, Y. F. Guo, Z. Yan, Y. P. Jing, C. Zhang, Y. P. Lin, T. X. Gao, X. Shen, S. W. Bai, R. F. Garcia Ruiz, J. Yang, and Y. L. Ye</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/68s7-71qt</dc:identifier>
    <prism:doi>10.1103/68s7-71qt</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-11T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/ad075Jf3D7b1da0902164ab124e27ddcce9e777db</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/prresearch/accepted/4007aJ84G3715f0493f2459504cd874527b35775d">
    <title>&lt;span&gt;Climate network characterization of the Atlantic Meridional Overturning Circulation edge state&lt;/span&gt;</title>
    <link>http://journals.aps.org/prresearch/accepted/4007aJ84G3715f0493f2459504cd874527b35775d</link>
    <description>Author(s): Laure Moinat, Reyk Börner, Valerio Lucarini, Maura Brunetti, and Henk A. Dijkstra&lt;br/&gt;&lt;span&gt;The Atlantic Meridional Overturning Circulation (AMOC) has been identified as a tipping element in the Earth system. Under the current climate change scenarios, it is urgent to develop robust methods for determining the probability of future AMOC transitions. Recent studies using an Earth System Mod…&lt;/span&gt;&lt;br/&gt;[Phys. Rev. Research] Published Tue Aug 11, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Laure Moinat, Reyk Börner, Valerio Lucarini, Maura Brunetti, and Henk A. Dijkstra</p><span>The Atlantic Meridional Overturning Circulation (AMOC) has been identified as a tipping element in the Earth system. Under the current climate change scenarios, it is urgent to develop robust methods for determining the probability of future AMOC transitions. Recent studies using an Earth System Mod…</span><br/><p>[Phys. Rev. Research] Published Tue Aug 11, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Climate network characterization of the Atlantic Meridional Overturning Circulation edge state&lt;/span&gt;</dc:title>
    <dc:creator>Laure Moinat, Reyk Börner, Valerio Lucarini, Maura Brunetti, and Henk A. Dijkstra</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. Research</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/q9bd-4h4j</dc:identifier>
    <prism:doi>10.1103/q9bd-4h4j</prism:doi>
    <prism:publicationName>Physical Review Research</prism:publicationName>
    <prism:publicationDate>2026-08-11T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/prresearch/accepted/4007aJ84G3715f0493f2459504cd874527b35775d</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
</rdf:RDF>
