<?xml version="1.0" encoding="UTF-8"?>
<rdf:RDF xmlns:rdf="http://www.w3.org/1999/02/22-rdf-syntax-ns#" xmlns:prism="http://prismstandard.org/namespaces/basic/2.0/" xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns:syn="http://purl.org/rss/1.0/modules/syndication/" xmlns:content="http://purl.org/rss/1.0/modules/content/" xmlns="http://purl.org/rss/1.0/">
  <channel rdf:about="http://journals.aps.org/apsos/">
    <title>Accepted Papers for APS Open Sci.</title>
    <link>http://journals.aps.org/apsos/</link>
    <description>Accepted Papers for APS Open Science</description>
    <syn:updatePeriod>hourly</syn:updatePeriod>
    <syn:updateFrequency>1</syn:updateFrequency>
    <syn:updateBase>2026-09-03T06:16:40+00:00</syn:updateBase>
    <dc:creator>rss@aps.org</dc:creator>
    <dc:publisher>assocpub@aps.org</dc:publisher>
    <dc:date>2026-09-03T06:16:40+00:00</dc:date>
    <dc:language>en</dc:language>
    <dc:rights>Copyright © 2026 the American Physical Society. Personal use only, all commercial or other reuse prohibited</dc:rights>
    <prism:copyright>Copyright © 2026 the American Physical Society</prism:copyright>
    <prism:rightsAgent>assocpub@aps.org</prism:rightsAgent>
    <items>
      <rdf:Seq>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/10074OacDa21355b32605cc7d8c3cb03dda13937c"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/7b072R02Dbd13c2916b921014b89fb484343d247e"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/1c076Ye1Wc91266f19376a35769586d22447b7dbd"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/17070R78Fec1162826f281b27002c84c5af9903f4"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/aa076Q2cF0910d4a76591c267718d55d81d5d3a48"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/73077Wa1F231630330eb50f322b712cb7bc8d524f"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/8e07eY15H622dc0f59f120e8e2a2a100cca02d0ef"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/8607aW21E261700df0203017030eb96a1c4e6856b"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/8c073Yc2W2918290d02a4450e6fe60c570edebb75"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/7907fY02Ded2eb02571d2bc418b37b7412af23cd8"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/d507fO42C221265ee0d948b986947854b4a853350"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/28078QdfFa010446516d88a3a1fac80091f52f692"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/d707aWc0G1915b05c0b318d2613634b6b26a2a345"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/c7075J43F1018a0af2d58684cba3e5319300e0eea"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/0207eK2fC441ba0b59425ba9c52e5097972c49c65"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/af076Wb3Fb61550cc0fd27e686e38fe9a08c50d23"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/6c077R8bEfd1f22d86805bc9c92d31849d7d7bef6"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/7007fN5eD491b42fc6f859290011983679cdaade2"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/08074W87G531e90620e430a4cae78d4f01e6a628e"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/69078O18E8015a5de3450d24f0d9a1e2023956a9b"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/f107bD18F3b1220ed19e94402fbda7c8993051e18"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/f4072Q5eG6d19184501b5a0868910b94d556015d6"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/81075W38D2b13d0ac06446e2f6df3872ddbc2bc30"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/7607aA0eF4b1c90df6ac0ac31e946611450f65e6c"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/ae074W60Ee01ce0420063cf4b5855a444454a8292"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/e7076Ya8Zbd10394b22673b0b21a1c3beb0d92b6a"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/f6079YbeF0223e06e7253774454d42da9c6656ea4"/>
        <rdf:li rdf:resource="http://journals.aps.org/apsos/accepted/e9073K11C831bd1fe03b0a485ae00de65c9ab7ff2"/>
      </rdf:Seq>
    </items>
  </channel>
  <item rdf:about="http://journals.aps.org/apsos/accepted/10074OacDa21355b32605cc7d8c3cb03dda13937c">
    <title>&lt;span&gt;Dehybridization transition in multiband systems: A renormalization group approach&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/10074OacDa21355b32605cc7d8c3cb03dda13937c</link>
    <description>Author(s): Mucio A. Continentino and Edine Silva&lt;br/&gt;&lt;span&gt;In strongly correlated multi-band systems, such as intermetallics, heavy fermions, and Kondo insulators, electron-electron interactions lead to the damping of electronic quasiparticles at finite temperatures. This phenomenon results in an effective dehybridization between the electrons in the large …&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Wed Sep 02, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Mucio A. Continentino and Edine Silva</p><span>In strongly correlated multi-band systems, such as intermetallics, heavy fermions, and Kondo insulators, electron-electron interactions lead to the damping of electronic quasiparticles at finite temperatures. This phenomenon results in an effective dehybridization between the electrons in the large …</span><br/><p>[APS Open Sci.] Published Wed Sep 02, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Dehybridization transition in multiband systems: A renormalization group approach&lt;/span&gt;</dc:title>
    <dc:creator>Mucio A. Continentino and Edine Silva</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/b9zl-1l8n</dc:identifier>
    <prism:doi>10.1103/b9zl-1l8n</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-09-02T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/10074OacDa21355b32605cc7d8c3cb03dda13937c</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/7b072R02Dbd13c2916b921014b89fb484343d247e">
    <title>&lt;span&gt;Bubble and spike reacceleraction in nonlinear, single mode, two-dimensional Rayleigh-Taylor instability&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/7b072R02Dbd13c2916b921014b89fb484343d247e</link>
    <description>Author(s): A. R. Piriz, S. A. Piriz, N. A. Tahir, and F. Cobos&lt;br/&gt;&lt;span&gt;A theoretical model is presented for the reacceleration process of the bubble and the spike that follows after the velocity saturation phase in the nonlinear, single mode, two-dimensional RayleighTaylor instability in ideal media. A previous irrotational model is extended to include the vorticity ef…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Wed Sep 02, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): A. R. Piriz, S. A. Piriz, N. A. Tahir, and F. Cobos</p><span>A theoretical model is presented for the reacceleration process of the bubble and the spike that follows after the velocity saturation phase in the nonlinear, single mode, two-dimensional RayleighTaylor instability in ideal media. A previous irrotational model is extended to include the vorticity ef…</span><br/><p>[APS Open Sci.] Published Wed Sep 02, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Bubble and spike reacceleraction in nonlinear, single mode, two-dimensional Rayleigh-Taylor instability&lt;/span&gt;</dc:title>
    <dc:creator>A. R. Piriz, S. A. Piriz, N. A. Tahir, and F. Cobos</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/px86-rwx6</dc:identifier>
    <prism:doi>10.1103/px86-rwx6</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-09-02T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/7b072R02Dbd13c2916b921014b89fb484343d247e</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/1c076Ye1Wc91266f19376a35769586d22447b7dbd">
    <title>&lt;span&gt;Proposal to search for long-lived neutral particles in CERN service shafts&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/1c076Ye1Wc91266f19376a35769586d22447b7dbd</link>
    <description>Author(s): Martin Bauer, Oleg Brandt, Lawrence Lee, and Christian Ohm&lt;br/&gt;&lt;span&gt;Long-lived particles are predicted by many extensions of the Standard Model and have been gaining interest in recent years. In this paper the original proposal is presented for AN Underground Belayed In-Shaft (ANUBIS) detector that substantially extends the sensitivity to particle lifetimes by instr…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Wed Sep 02, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Martin Bauer, Oleg Brandt, Lawrence Lee, and Christian Ohm</p><span>Long-lived particles are predicted by many extensions of the Standard Model and have been gaining interest in recent years. In this paper the original proposal is presented for AN Underground Belayed In-Shaft (ANUBIS) detector that substantially extends the sensitivity to particle lifetimes by instr…</span><br/><p>[APS Open Sci.] Published Wed Sep 02, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Proposal to search for long-lived neutral particles in CERN service shafts&lt;/span&gt;</dc:title>
    <dc:creator>Martin Bauer, Oleg Brandt, Lawrence Lee, and Christian Ohm</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/n652-fgyb</dc:identifier>
    <prism:doi>10.1103/n652-fgyb</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-09-02T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/1c076Ye1Wc91266f19376a35769586d22447b7dbd</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/17070R78Fec1162826f281b27002c84c5af9903f4">
    <title>&lt;span&gt;Popularity-driven random walk graph convolutional networks&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/17070R78Fec1162826f281b27002c84c5af9903f4</link>
    <description>Author(s): Narendran R. V and Alwin Poulose&lt;br/&gt;&lt;span&gt;We introduce the Popularity-Driven Random Walk Graph Convolutional Network (PDRW-GCN), a topology-aware graph neural network that incorporates degree-biased diffusion to exploit the heavy-tailed connectivity of scale-free networks. By incorporating a structural bias parameter, β, the model dynamical…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Wed Sep 02, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Narendran R. V and Alwin Poulose</p><span>We introduce the Popularity-Driven Random Walk Graph Convolutional Network (PDRW-GCN), a topology-aware graph neural network that incorporates degree-biased diffusion to exploit the heavy-tailed connectivity of scale-free networks. By incorporating a structural bias parameter, β, the model dynamical…</span><br/><p>[APS Open Sci.] Published Wed Sep 02, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Popularity-driven random walk graph convolutional networks&lt;/span&gt;</dc:title>
    <dc:creator>Narendran R. V and Alwin Poulose</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/qgbq-9r7p</dc:identifier>
    <prism:doi>10.1103/qgbq-9r7p</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-09-02T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/17070R78Fec1162826f281b27002c84c5af9903f4</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/aa076Q2cF0910d4a76591c267718d55d81d5d3a48">
    <title>&lt;span&gt;Tachyonic instability in Randall-Sundrum braneworld scenarios&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/aa076Q2cF0910d4a76591c267718d55d81d5d3a48</link>
    <description>Author(s): Abhirup Karmakar and Soumitra SenGupta&lt;br/&gt;&lt;span&gt;Low-energy effective theories provide a natural description of four-dimensional physics in higher-dimensional geometries, where the imprint of the bulk geometry appears as parameters of the lower-dimensional theory. Inspired by the Damour-Esposito-Farése (DEF) model of spontaneous scalarization in f…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Wed Sep 02, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Abhirup Karmakar and Soumitra SenGupta</p><span>Low-energy effective theories provide a natural description of four-dimensional physics in higher-dimensional geometries, where the imprint of the bulk geometry appears as parameters of the lower-dimensional theory. Inspired by the Damour-Esposito-Farése (DEF) model of spontaneous scalarization in f…</span><br/><p>[APS Open Sci.] Published Wed Sep 02, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Tachyonic instability in Randall-Sundrum braneworld scenarios&lt;/span&gt;</dc:title>
    <dc:creator>Abhirup Karmakar and Soumitra SenGupta</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/xv43-tr6m</dc:identifier>
    <prism:doi>10.1103/xv43-tr6m</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-09-02T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/aa076Q2cF0910d4a76591c267718d55d81d5d3a48</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/73077Wa1F231630330eb50f322b712cb7bc8d524f">
    <title>&lt;span&gt;Morphological parameters capture emergent properties of dynamic disordered cytoskeletal networks&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/73077Wa1F231630330eb50f322b712cb7bc8d524f</link>
    <description>Author(s): Soumik Ghosh, Lilianna Houston, Alejandra Vasquez, Kingshuk Ghosh, and Ashok Prasad&lt;br/&gt;&lt;span&gt;The actin cytoskeleton is an inherently disordered active system. The actomyosin cortex and reconstituted actomyosin systems are globally disordered, yet undergo transitions between distinct disordered states as parameters like motor and crosslinker concentration and filament length and rigidity cha…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Wed Sep 02, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Soumik Ghosh, Lilianna Houston, Alejandra Vasquez, Kingshuk Ghosh, and Ashok Prasad</p><span>The actin cytoskeleton is an inherently disordered active system. The actomyosin cortex and reconstituted actomyosin systems are globally disordered, yet undergo transitions between distinct disordered states as parameters like motor and crosslinker concentration and filament length and rigidity cha…</span><br/><p>[APS Open Sci.] Published Wed Sep 02, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Morphological parameters capture emergent properties of dynamic disordered cytoskeletal networks&lt;/span&gt;</dc:title>
    <dc:creator>Soumik Ghosh, Lilianna Houston, Alejandra Vasquez, Kingshuk Ghosh, and Ashok Prasad</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/b8cz-s9ld</dc:identifier>
    <prism:doi>10.1103/b8cz-s9ld</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-09-02T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/73077Wa1F231630330eb50f322b712cb7bc8d524f</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/8e07eY15H622dc0f59f120e8e2a2a100cca02d0ef">
    <title>&lt;span&gt;KM3NeT 220 PeV event: A neutrino messenger from the grand unification scale?&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/8e07eY15H622dc0f59f120e8e2a2a100cca02d0ef</link>
    <description>Author(s): Vernon Barger&lt;br/&gt;&lt;span&gt;The 220~PeV neutrino KM3-230213A, in tension with IceCube and Auger unless the underlying spectrum is narrow (a $∼2σ$ upward fluctuation in any case), admits a two-body reading: relic decay $X→ν\stackrel{‾}{ν}$ with ${m}_{X}≈4.4×{10}^{8}$~GeV. Consistency with neutrino and $γ$-ray bounds sets $τ/f≈{…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Wed Sep 02, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Vernon Barger</p><span>The 220~PeV neutrino KM3-230213A, in tension with IceCube and Auger unless the underlying spectrum is narrow (a <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mo>∼</mo><mn>2</mn><mi>σ</mi></mrow></math> upward fluctuation in any case), admits a two-body reading: relic decay <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mi>X</mi><mo>→</mo><mi>ν</mi><mover><mi>ν</mi><mo accent="true">‾</mo></mover></mrow></math> with <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><msub><mi>m</mi><mi>X</mi></msub><mo>≈</mo><mn>4.4</mn><mo>×</mo><msup><mn>10</mn><mn>8</mn></msup></mrow></math>~GeV. Consistency with neutrino and <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mi>γ</mi></math>-ray bounds sets <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mi>τ</mi><mi>/</mi><mi>f</mi><mo>≈</mo><msup><mn>10</mn><mn>29</mn></msup></mrow></math>–<math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><msup><mn>10</mn><mn>30</mn></msup></math>~s, lifetime over relic …</span><br/><p>[APS Open Sci.] Published Wed Sep 02, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;KM3NeT 220 PeV event: A neutrino messenger from the grand unification scale?&lt;/span&gt;</dc:title>
    <dc:creator>Vernon Barger</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/51px-xpdh</dc:identifier>
    <prism:doi>10.1103/51px-xpdh</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-09-02T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/8e07eY15H622dc0f59f120e8e2a2a100cca02d0ef</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/8607aW21E261700df0203017030eb96a1c4e6856b">
    <title>&lt;span&gt;Vibrational inhomogeneity in amorphous solids and its geometric features&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/8607aW21E261700df0203017030eb96a1c4e6856b</link>
    <description>Author(s): Cunyuan Jiang&lt;br/&gt;&lt;span&gt;The dynamical response of amorphous solids is expected to be inhomogeneous due to the absence of translational symmetry, unlike in crystals. In this work, we use Green’s function method combined with the Hessian matrix from simulation data to characterize the vibrational inhomogeneity of a two-dimen…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Fri Aug 28, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Cunyuan Jiang</p><span>The dynamical response of amorphous solids is expected to be inhomogeneous due to the absence of translational symmetry, unlike in crystals. In this work, we use Green’s function method combined with the Hessian matrix from simulation data to characterize the vibrational inhomogeneity of a two-dimen…</span><br/><p>[APS Open Sci.] Published Fri Aug 28, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Vibrational inhomogeneity in amorphous solids and its geometric features&lt;/span&gt;</dc:title>
    <dc:creator>Cunyuan Jiang</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/qx17-q53j</dc:identifier>
    <prism:doi>10.1103/qx17-q53j</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-08-28T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/8607aW21E261700df0203017030eb96a1c4e6856b</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/8c073Yc2W2918290d02a4450e6fe60c570edebb75">
    <title>&lt;span&gt;Einstein ring fingerprint around supermassive black holes illuminated by broad line region spectral lines&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/8c073Yc2W2918290d02a4450e6fe60c570edebb75</link>
    <description>Author(s): Konstantinos Kostaros, George Pappas, Padelis Papadopoulos, and Wing-Fai Thi&lt;br/&gt;&lt;span&gt;The continuum emission from the hot and ionized inner regions of accretion disks around supermassive black holes (SMBHs), that is strongly lensed by the light-ring (i.e., the unstable photon orbit) is always superimposed on that from the locally emitting plasma near the innermost stable circular orb…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Thu Aug 27, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Konstantinos Kostaros, George Pappas, Padelis Papadopoulos, and Wing-Fai Thi</p><span>The continuum emission from the hot and ionized inner regions of accretion disks around supermassive black holes (SMBHs), that is strongly lensed by the light-ring (i.e., the unstable photon orbit) is always superimposed on that from the locally emitting plasma near the innermost stable circular orb…</span><br/><p>[APS Open Sci.] Published Thu Aug 27, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Einstein ring fingerprint around supermassive black holes illuminated by broad line region spectral lines&lt;/span&gt;</dc:title>
    <dc:creator>Konstantinos Kostaros, George Pappas, Padelis Papadopoulos, and Wing-Fai Thi</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/7h39-dk84</dc:identifier>
    <prism:doi>10.1103/7h39-dk84</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-08-27T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/8c073Yc2W2918290d02a4450e6fe60c570edebb75</prism:url>
    <dc:subject>Letters</dc:subject>
    <prism:section>Letters</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/7907fY02Ded2eb02571d2bc418b37b7412af23cd8">
    <title>&lt;span&gt;Thermalization-induced entropy-rate representation of internal energy in a damped quantum oscillator&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/7907fY02Ded2eb02571d2bc418b37b7412af23cd8</link>
    <description>Author(s): Hyeong-Chan Kim and Youngone Lee&lt;br/&gt;&lt;span&gt;We study a harmonic oscillator weakly coupled to a thermal bath and evolving under the standard quantum-optical master equation. For zero-mean Gaussian states, entropy alone does not determine the internal energy because the latter also depends on nonequilibrium Gaussian structure. We show, however,…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Thu Aug 27, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Hyeong-Chan Kim and Youngone Lee</p><span>We study a harmonic oscillator weakly coupled to a thermal bath and evolving under the standard quantum-optical master equation. For zero-mean Gaussian states, entropy alone does not determine the internal energy because the latter also depends on nonequilibrium Gaussian structure. We show, however,…</span><br/><p>[APS Open Sci.] Published Thu Aug 27, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Thermalization-induced entropy-rate representation of internal energy in a damped quantum oscillator&lt;/span&gt;</dc:title>
    <dc:creator>Hyeong-Chan Kim and Youngone Lee</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/9htl-dz1q</dc:identifier>
    <prism:doi>10.1103/9htl-dz1q</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-08-27T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/7907fY02Ded2eb02571d2bc418b37b7412af23cd8</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/d507fO42C221265ee0d948b986947854b4a853350">
    <title>&lt;span&gt;Systematic study of single-molecule metallocenes with 4$d$ and 3$d$ transition-metal atoms&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/d507fO42C221265ee0d948b986947854b4a853350</link>
    <description>Author(s): Daniela Herrera-Molina, Kushantha P. K. Withanage, Jesús N. Pedroza-Montero, Pardeep Kaur, Mark R. Pederson, and M. F. Islam&lt;br/&gt;&lt;span&gt;The realization of spin-based devices remains one of the central goals of spintronics research. Single-molecule magnets (SMMs) constitute an important class of nanoscale magnetic systems with significant potential for spintronic applications, where individual molecules can serve as fundamental build…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Thu Aug 27, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Daniela Herrera-Molina, Kushantha P. K. Withanage, Jesús N. Pedroza-Montero, Pardeep Kaur, Mark R. Pederson, and M. F. Islam</p><span>The realization of spin-based devices remains one of the central goals of spintronics research. Single-molecule magnets (SMMs) constitute an important class of nanoscale magnetic systems with significant potential for spintronic applications, where individual molecules can serve as fundamental build…</span><br/><p>[APS Open Sci.] Published Thu Aug 27, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Systematic study of single-molecule metallocenes with 4$d$ and 3$d$ transition-metal atoms&lt;/span&gt;</dc:title>
    <dc:creator>Daniela Herrera-Molina, Kushantha P. K. Withanage, Jesús N. Pedroza-Montero, Pardeep Kaur, Mark R. Pederson, and M. F. Islam</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/rnkj-3f8h</dc:identifier>
    <prism:doi>10.1103/rnkj-3f8h</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-08-27T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/d507fO42C221265ee0d948b986947854b4a853350</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/28078QdfFa010446516d88a3a1fac80091f52f692">
    <title>&lt;span&gt;Covariant approach to the Dirac field in locally rotationally symmetric space-times: The case of coplanar frames&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/28078QdfFa010446516d88a3a1fac80091f52f692</link>
    <description>Author(s): Stefano Vignolo, Giuseppe De Maria, Sante Carloni, and Luca Fabbri&lt;br/&gt;&lt;span&gt;We employ the polar decomposition of the Dirac field to describe it as an effective spinorial fluid. We then construct a $(1+1+2)$ covariant formalism for the Dirac field that avoids the introduction of tetrad fields and Clifford matrices. Within this framework, we analyze the conditions under which…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Thu Aug 27, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Stefano Vignolo, Giuseppe De Maria, Sante Carloni, and Luca Fabbri</p><span>We employ the polar decomposition of the Dirac field to describe it as an effective spinorial fluid. We then construct a <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><mo stretchy="false" form="prefix">(</mo><mn>1</mn><mo>+</mo><mn>1</mn><mo>+</mo><mn>2</mn><mo stretchy="false" form="postfix">)</mo></mrow></math> covariant formalism for the Dirac field that avoids the introduction of tetrad fields and Clifford matrices. Within this framework, we analyze the conditions under which a…</span><br/><p>[APS Open Sci.] Published Thu Aug 27, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Covariant approach to the Dirac field in locally rotationally symmetric space-times: The case of coplanar frames&lt;/span&gt;</dc:title>
    <dc:creator>Stefano Vignolo, Giuseppe De Maria, Sante Carloni, and Luca Fabbri</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/qfy6-mrh7</dc:identifier>
    <prism:doi>10.1103/qfy6-mrh7</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-08-27T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/28078QdfFa010446516d88a3a1fac80091f52f692</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/d707aWc0G1915b05c0b318d2613634b6b26a2a345">
    <title>&lt;span&gt;Evidence for Umklapp electron scattering emission from metal photocathodes&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/d707aWc0G1915b05c0b318d2613634b6b26a2a345</link>
    <description>Author(s): I-J. Shan, L. A. Angeloni, and W. Andreas Schroeder&lt;br/&gt;&lt;span&gt;Comparison of the measured spectral emission properties of single-crystal Cu(001) and W(111) photocathodes to established photoemission theories reveal evidence for an additional one-photon emission process predominantly affecting electron emission near and below the photoemission threshold. This ad…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Wed Aug 26, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): I-J. Shan, L. A. Angeloni, and W. Andreas Schroeder</p><span>Comparison of the measured spectral emission properties of single-crystal Cu(001) and W(111) photocathodes to established photoemission theories reveal evidence for an additional one-photon emission process predominantly affecting electron emission near and below the photoemission threshold. This ad…</span><br/><p>[APS Open Sci.] Published Wed Aug 26, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Evidence for Umklapp electron scattering emission from metal photocathodes&lt;/span&gt;</dc:title>
    <dc:creator>I-J. Shan, L. A. Angeloni, and W. Andreas Schroeder</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/1c1y-fzsj</dc:identifier>
    <prism:doi>10.1103/1c1y-fzsj</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-08-26T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/d707aWc0G1915b05c0b318d2613634b6b26a2a345</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/c7075J43F1018a0af2d58684cba3e5319300e0eea">
    <title>&lt;span&gt;Simulation of unimolecular fluoromethane dissociation on a quantum computer using the cascaded variational quantum eigensolver algorithm&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/c7075J43F1018a0af2d58684cba3e5319300e0eea</link>
    <description>Author(s): Gloria Bazargan, John P. T. Stenger, and Daniel Gunlycke&lt;br/&gt;&lt;span&gt;Simulating chemical reactions on quantum computers has the potential to offer insight that cannot be gained practically from conventional quantum-chemical approaches on classical computers. This is because quantum computing provides a platform for efficient, high-level electronic structure calculati…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Wed Aug 26, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Gloria Bazargan, John P. T. Stenger, and Daniel Gunlycke</p><span>Simulating chemical reactions on quantum computers has the potential to offer insight that cannot be gained practically from conventional quantum-chemical approaches on classical computers. This is because quantum computing provides a platform for efficient, high-level electronic structure calculati…</span><br/><p>[APS Open Sci.] Published Wed Aug 26, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Simulation of unimolecular fluoromethane dissociation on a quantum computer using the cascaded variational quantum eigensolver algorithm&lt;/span&gt;</dc:title>
    <dc:creator>Gloria Bazargan, John P. T. Stenger, and Daniel Gunlycke</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/1ljr-8zrf</dc:identifier>
    <prism:doi>10.1103/1ljr-8zrf</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-08-26T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/c7075J43F1018a0af2d58684cba3e5319300e0eea</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/0207eK2fC441ba0b59425ba9c52e5097972c49c65">
    <title>&lt;span&gt;Multivariate Rényi divergences characterize betting games with multiple lotteries&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/0207eK2fC441ba0b59425ba9c52e5097972c49c65</link>
    <description>Author(s): Andrés F. Ducuara, Erkka Haapasalo, and Ryo Takakura&lt;br/&gt;&lt;span&gt;We provide an operational interpretation of the multivariate R'enyi divergence in terms of economic-theoretic tasks based on betting, risk aversion, and multiple lotteries. Specifically, we show that the multivariate R'enyi divergence ${D}_{\underset{_}{α}}({\stackrel{⃗}{P}}_{X})$ of probability dis…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Wed Aug 26, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Andrés F. Ducuara, Erkka Haapasalo, and Ryo Takakura</p><span>We provide an operational interpretation of the multivariate R'enyi divergence in terms of economic-theoretic tasks based on betting, risk aversion, and multiple lotteries. Specifically, we show that the multivariate R'enyi divergence <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><msub><mi>D</mi><munder><mi>α</mi><mo accent="true">_</mo></munder></msub><mo stretchy="false" form="prefix">(</mo><msub><mover><mi>P</mi><mo accent="true">⃗</mo></mover><mi>X</mi></msub><mo stretchy="false" form="postfix">)</mo></mrow></math> of probability distributions <math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><mrow><msub><mover><mi>P</mi><mo accent="true">⃗</mo></mover><mi>X</mi></msub><mo>=</mo><mo stretchy="false" form="prefix">(</mo><msubsup><mi>p</mi><mi>X</mi><mrow><mo stretchy="false" form="prefix">(</mo><mn>0</mn><mo stretchy="false" form="postfix">)</mo></mrow></msubsup><mo>,</mo><mi>…</mi><mo>,</mo><msubsup><mi>p</mi><mi>X</mi><mrow><mo stretchy="false" form="prefix">(</mo><mi>d</mi><mo stretchy="false" form="postfix">)</mo></mrow></msubsup><mo stretchy="false" form="postfix">)</mo></mrow></math> and rea…</span><br/><p>[APS Open Sci.] Published Wed Aug 26, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Multivariate Rényi divergences characterize betting games with multiple lotteries&lt;/span&gt;</dc:title>
    <dc:creator>Andrés F. Ducuara, Erkka Haapasalo, and Ryo Takakura</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/h8zk-pl1p</dc:identifier>
    <prism:doi>10.1103/h8zk-pl1p</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-08-26T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/0207eK2fC441ba0b59425ba9c52e5097972c49c65</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/af076Wb3Fb61550cc0fd27e686e38fe9a08c50d23">
    <title>&lt;span&gt;Scattered light noise at LIGO Livingston Observatory during O4&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/af076Wb3Fb61550cc0fd27e686e38fe9a08c50d23</link>
    <description>Author(s): Debasmita Nandi, Anamaria Effler, Siddharth Soni, Tabata Aira Ferreira, Robert Schofield, Huyen Pham, Timothy O’Hanlon, V. V. Frolov, and Gabriela González&lt;br/&gt;&lt;span&gt;Scattered light is one of the most common sources of noise in the LIGO gravitational wave detectors. Light scattering is a highly non-linear process through which motion at low frequencies gets up-converted and creates noise in a higher frequency band in the detector data. From the beginning of the …&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Tue Aug 25, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Debasmita Nandi, Anamaria Effler, Siddharth Soni, Tabata Aira Ferreira, Robert Schofield, Huyen Pham, Timothy O’Hanlon, V. V. Frolov, and Gabriela González</p><span>Scattered light is one of the most common sources of noise in the LIGO gravitational wave detectors. Light scattering is a highly non-linear process through which motion at low frequencies gets up-converted and creates noise in a higher frequency band in the detector data. From the beginning of the …</span><br/><p>[APS Open Sci.] Published Tue Aug 25, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Scattered light noise at LIGO Livingston Observatory during O4&lt;/span&gt;</dc:title>
    <dc:creator>Debasmita Nandi, Anamaria Effler, Siddharth Soni, Tabata Aira Ferreira, Robert Schofield, Huyen Pham, Timothy O’Hanlon, V. V. Frolov, and Gabriela González</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/tb1c-s6g1</dc:identifier>
    <prism:doi>10.1103/tb1c-s6g1</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-08-25T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/af076Wb3Fb61550cc0fd27e686e38fe9a08c50d23</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/6c077R8bEfd1f22d86805bc9c92d31849d7d7bef6">
    <title>&lt;span&gt;Solution of the Ising model with Brascamp-Kunz boundary conditions by the transfer matrix method&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/6c077R8bEfd1f22d86805bc9c92d31849d7d7bef6</link>
    <description>Author(s): De-Zhang Li and Xin Wang&lt;br/&gt;&lt;span&gt;The square lattice Ising model under the Brascamp-Kunz boundary conditions is a well-known exactly solvable lattice model. The exact solution of this system has been derived within the framework of Pfaffian-type method. In this paper we provide a derivation for the solution by the Schultz-Mattis-Lie…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Tue Aug 25, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): De-Zhang Li and Xin Wang</p><span>The square lattice Ising model under the Brascamp-Kunz boundary conditions is a well-known exactly solvable lattice model. The exact solution of this system has been derived within the framework of Pfaffian-type method. In this paper we provide a derivation for the solution by the Schultz-Mattis-Lie…</span><br/><p>[APS Open Sci.] Published Tue Aug 25, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Solution of the Ising model with Brascamp-Kunz boundary conditions by the transfer matrix method&lt;/span&gt;</dc:title>
    <dc:creator>De-Zhang Li and Xin Wang</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/1dby-z8np</dc:identifier>
    <prism:doi>10.1103/1dby-z8np</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-08-25T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/6c077R8bEfd1f22d86805bc9c92d31849d7d7bef6</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/7007fN5eD491b42fc6f859290011983679cdaade2">
    <title>&lt;span&gt;Spatial superposition for a two-dimensional matter-wave interferometer in an inverted harmonic potential with gyroscopic rotational stability&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/7007fN5eD491b42fc6f859290011983679cdaade2</link>
    <description>Author(s): Ryan Rizaldy, Tian Zhou, Run Zhou, and Anupam Mazumdar&lt;br/&gt;&lt;span&gt;This study presents a mathematical model of the spatial and rotational motion of a nanodiamond in an inverted harmonic potential to create a macroscopic quantum spatial superposition. The model is based on the Stern-Gerlach Interferometer (SGI) scheme, which utilises linear and quadratic magnetic fi…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Mon Aug 24, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Ryan Rizaldy, Tian Zhou, Run Zhou, and Anupam Mazumdar</p><span>This study presents a mathematical model of the spatial and rotational motion of a nanodiamond in an inverted harmonic potential to create a macroscopic quantum spatial superposition. The model is based on the Stern-Gerlach Interferometer (SGI) scheme, which utilises linear and quadratic magnetic fi…</span><br/><p>[APS Open Sci.] Published Mon Aug 24, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Spatial superposition for a two-dimensional matter-wave interferometer in an inverted harmonic potential with gyroscopic rotational stability&lt;/span&gt;</dc:title>
    <dc:creator>Ryan Rizaldy, Tian Zhou, Run Zhou, and Anupam Mazumdar</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/cwm2-6vgp</dc:identifier>
    <prism:doi>10.1103/cwm2-6vgp</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-08-24T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/7007fN5eD491b42fc6f859290011983679cdaade2</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/08074W87G531e90620e430a4cae78d4f01e6a628e">
    <title>&lt;span&gt;Hamilton-Jacobi theory of quantized biological function&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/08074W87G531e90620e430a4cae78d4f01e6a628e</link>
    <description>Author(s): Francisco Monroy&lt;br/&gt;&lt;span&gt;Living systems display organised, context-dependent dynamics through a restricted repertoire of persistent functional states. At mesoscopic scales, where biological motion is classical, dissipative and noisy, this discreteness cannot be attributed to microscopic quantum effects alone. Here we formul…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Thu Aug 20, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Francisco Monroy</p><span>Living systems display organised, context-dependent dynamics through a restricted repertoire of persistent functional states. At mesoscopic scales, where biological motion is classical, dissipative and noisy, this discreteness cannot be attributed to microscopic quantum effects alone. Here we formul…</span><br/><p>[APS Open Sci.] Published Thu Aug 20, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Hamilton-Jacobi theory of quantized biological function&lt;/span&gt;</dc:title>
    <dc:creator>Francisco Monroy</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/x2fd-pjlb</dc:identifier>
    <prism:doi>10.1103/x2fd-pjlb</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-08-20T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/08074W87G531e90620e430a4cae78d4f01e6a628e</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/69078O18E8015a5de3450d24f0d9a1e2023956a9b">
    <title>&lt;span&gt;Superconducting ground state study of Cr-based equiatomic high-entropy alloy through $μ$SR&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/69078O18E8015a5de3450d24f0d9a1e2023956a9b</link>
    <description>Author(s): Sonika Jangid, Rhea Stewart, Adrian D. Hillier, and R. P. Singh&lt;br/&gt;&lt;span&gt;High-entropy alloy superconductors, characterized by extreme chemical disorder and complex electronic environments, have attracted significant attention as model systems for exploring superconductivity in disordered materials. Here, we investigate a Cr-based equiatomic HEA, Cr-V-Ti-Nb-Ta, which cont…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Wed Aug 19, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Sonika Jangid, Rhea Stewart, Adrian D. Hillier, and R. P. Singh</p><span>High-entropy alloy superconductors, characterized by extreme chemical disorder and complex electronic environments, have attracted significant attention as model systems for exploring superconductivity in disordered materials. Here, we investigate a Cr-based equiatomic HEA, Cr-V-Ti-Nb-Ta, which cont…</span><br/><p>[APS Open Sci.] Published Wed Aug 19, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Superconducting ground state study of Cr-based equiatomic high-entropy alloy through $μ$SR&lt;/span&gt;</dc:title>
    <dc:creator>Sonika Jangid, Rhea Stewart, Adrian D. Hillier, and R. P. Singh</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/ft3z-h51w</dc:identifier>
    <prism:doi>10.1103/ft3z-h51w</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-08-19T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/69078O18E8015a5de3450d24f0d9a1e2023956a9b</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/f107bD18F3b1220ed19e94402fbda7c8993051e18">
    <title>&lt;span&gt;Gravitational-wave-inspired scrambling delay in Sachdev-Ye-Kitaev wormhole teleportation&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/f107bD18F3b1220ed19e94402fbda7c8993051e18</link>
    <description>Author(s): Sudhanva Joshi and Sunil Kumar Mishra&lt;br/&gt;&lt;span&gt;Traversable wormhole teleportation in the Sachdev-Ye-Kitaev (SYK) model links quantum channel integrity directly to black hole interior dynamics: the teleportation fidelity is a boundary-accessible probe of the many-body scrambling that underlies the holographic wormhole. We subject the SYK boundary…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Wed Aug 19, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Sudhanva Joshi and Sunil Kumar Mishra</p><span>Traversable wormhole teleportation in the Sachdev-Ye-Kitaev (SYK) model links quantum channel integrity directly to black hole interior dynamics: the teleportation fidelity is a boundary-accessible probe of the many-body scrambling that underlies the holographic wormhole. We subject the SYK boundary…</span><br/><p>[APS Open Sci.] Published Wed Aug 19, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Gravitational-wave-inspired scrambling delay in Sachdev-Ye-Kitaev wormhole teleportation&lt;/span&gt;</dc:title>
    <dc:creator>Sudhanva Joshi and Sunil Kumar Mishra</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/dcsl-w84w</dc:identifier>
    <prism:doi>10.1103/dcsl-w84w</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-08-19T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/f107bD18F3b1220ed19e94402fbda7c8993051e18</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/f4072Q5eG6d19184501b5a0868910b94d556015d6">
    <title>&lt;span&gt;Mechanics as a general-relativistic gauge field theory, and relational quantization&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/f4072Q5eG6d19184501b5a0868910b94d556015d6</link>
    <description>Author(s): J. T. François and L. Ravera&lt;br/&gt;&lt;span&gt;We treat the Mechanics of point particles as a 1-dimensional general-relativistic gauge field theory, which may be referred to as Mechanical Field Theory (MFT), exploiting the bundle geometry of Mechanical Field Space (MFS). The diffeomorphism covariance of MFT encodes its relational character, aris…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Wed Aug 19, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): J. T. François and L. Ravera</p><span>We treat the Mechanics of point particles as a 1-dimensional general-relativistic gauge field theory, which may be referred to as Mechanical Field Theory (MFT), exploiting the bundle geometry of Mechanical Field Space (MFS). The diffeomorphism covariance of MFT encodes its relational character, aris…</span><br/><p>[APS Open Sci.] Published Wed Aug 19, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Mechanics as a general-relativistic gauge field theory, and relational quantization&lt;/span&gt;</dc:title>
    <dc:creator>J. T. François and L. Ravera</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/bttl-7rdd</dc:identifier>
    <prism:doi>10.1103/bttl-7rdd</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-08-19T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/f4072Q5eG6d19184501b5a0868910b94d556015d6</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/81075W38D2b13d0ac06446e2f6df3872ddbc2bc30">
    <title>&lt;span&gt;Detection of gravitational wave modes in third generation detectors&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/81075W38D2b13d0ac06446e2f6df3872ddbc2bc30</link>
    <description>Author(s): Massimo Tinto, Sanjeev Dhurandhar, and Harshit Raj&lt;br/&gt;&lt;span&gt;We investigate the detectability of Gravitational Wave (GW) modes (emitted by black-holes and neutron stars) by third generation, ground-based gravitational wave detectors planned to be operational in the next decade. Our analysis focuses on the Cosmic Explorer and Einstein Telescope projects, which…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Wed Aug 19, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Massimo Tinto, Sanjeev Dhurandhar, and Harshit Raj</p><span>We investigate the detectability of Gravitational Wave (GW) modes (emitted by black-holes and neutron stars) by third generation, ground-based gravitational wave detectors planned to be operational in the next decade. Our analysis focuses on the Cosmic Explorer and Einstein Telescope projects, which…</span><br/><p>[APS Open Sci.] Published Wed Aug 19, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Detection of gravitational wave modes in third generation detectors&lt;/span&gt;</dc:title>
    <dc:creator>Massimo Tinto, Sanjeev Dhurandhar, and Harshit Raj</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/gk3w-ngxw</dc:identifier>
    <prism:doi>10.1103/gk3w-ngxw</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-08-19T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/81075W38D2b13d0ac06446e2f6df3872ddbc2bc30</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/7607aA0eF4b1c90df6ac0ac31e946611450f65e6c">
    <title>&lt;span&gt;Scattering singularities of a resonant cavity containing plasma&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/7607aA0eF4b1c90df6ac0ac31e946611450f65e6c</link>
    <description>Author(s): C. Bouyssou, R. Pascaud, C. Cailhol, V. Maziéres, O. Pascal, T. Callegari, J. Sokoloff, and T. Delage&lt;br/&gt;&lt;span&gt;The influence of plasma on the evolution of scattering singularities in microwave cavities remains largely unexplored, despite its importance for controlling reflectionless plasma excitation. In this work, we investigate the evolution of scattering singularities in a plasma-loaded microwave cavity. …&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Wed Aug 19, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): C. Bouyssou, R. Pascaud, C. Cailhol, V. Maziéres, O. Pascal, T. Callegari, J. Sokoloff, and T. Delage</p><span>The influence of plasma on the evolution of scattering singularities in microwave cavities remains largely unexplored, despite its importance for controlling reflectionless plasma excitation. In this work, we investigate the evolution of scattering singularities in a plasma-loaded microwave cavity. …</span><br/><p>[APS Open Sci.] Published Wed Aug 19, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Scattering singularities of a resonant cavity containing plasma&lt;/span&gt;</dc:title>
    <dc:creator>C. Bouyssou, R. Pascaud, C. Cailhol, V. Maziéres, O. Pascal, T. Callegari, J. Sokoloff, and T. Delage</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>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/5d6b-yljs</dc:identifier>
    <prism:doi>10.1103/5d6b-yljs</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-08-19T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/7607aA0eF4b1c90df6ac0ac31e946611450f65e6c</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/ae074W60Ee01ce0420063cf4b5855a444454a8292">
    <title>&lt;span&gt;Coffee-ring deposits in concentrated suspensions of anisotropic colloids&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/ae074W60Ee01ce0420063cf4b5855a444454a8292</link>
    <description>Author(s): Samuel S. Nielsen, Brian C. Seper, Ryker Fish, Brennan Sprinkle, and Michelle M. Driscoll&lt;br/&gt;&lt;span&gt;Evaporating a droplet containing dispersed colloids leaves behind a dried deposit whose shape is determined by capillary flows and the resulting particle transport. The classical coffee-ring effect occurs when an outward radial flow drives particles toward the droplet’s contact line as the droplet e…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Wed Aug 05, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Samuel S. Nielsen, Brian C. Seper, Ryker Fish, Brennan Sprinkle, and Michelle M. Driscoll</p><span>Evaporating a droplet containing dispersed colloids leaves behind a dried deposit whose shape is determined by capillary flows and the resulting particle transport. The classical coffee-ring effect occurs when an outward radial flow drives particles toward the droplet’s contact line as the droplet e…</span><br/><p>[APS Open Sci.] Published Wed Aug 05, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Coffee-ring deposits in concentrated suspensions of anisotropic colloids&lt;/span&gt;</dc:title>
    <dc:creator>Samuel S. Nielsen, Brian C. Seper, Ryker Fish, Brennan Sprinkle, and Michelle M. Driscoll</dc:creator>
    <dc:date>2026-08-05T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/rzgy-j37g</dc:identifier>
    <prism:doi>10.1103/rzgy-j37g</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-08-05T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/ae074W60Ee01ce0420063cf4b5855a444454a8292</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/e7076Ya8Zbd10394b22673b0b21a1c3beb0d92b6a">
    <title>&lt;span&gt;Renormalized hydrodynamics in polar chiral active matter: Spectral scaling and disorder-driven vortex clustering in phase-coupled, motile oscillators&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/e7076Ya8Zbd10394b22673b0b21a1c3beb0d92b6a</link>
    <description>Author(s): Magnus F. Ivarsen&lt;br/&gt;&lt;span&gt;Active turbulence in overdamped chiral systems presents a complex challenge, namely the frequent exhibition of non-universal spectral scaling, creating large-scale coherent structuring that seemingly defies standard inertial fluid descriptions. In this study, we investigate the hydrodynamic limit of…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Thu Jul 23, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Magnus F. Ivarsen</p><span>Active turbulence in overdamped chiral systems presents a complex challenge, namely the frequent exhibition of non-universal spectral scaling, creating large-scale coherent structuring that seemingly defies standard inertial fluid descriptions. In this study, we investigate the hydrodynamic limit of…</span><br/><p>[APS Open Sci.] Published Thu Jul 23, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Renormalized hydrodynamics in polar chiral active matter: Spectral scaling and disorder-driven vortex clustering in phase-coupled, motile oscillators&lt;/span&gt;</dc:title>
    <dc:creator>Magnus F. Ivarsen</dc:creator>
    <dc:date>2026-07-23T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/hc9d-fpmj</dc:identifier>
    <prism:doi>10.1103/hc9d-fpmj</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-07-23T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/e7076Ya8Zbd10394b22673b0b21a1c3beb0d92b6a</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/f6079YbeF0223e06e7253774454d42da9c6656ea4">
    <title>&lt;span&gt;Analytical singular-value structure of analytic-continuation kernels from Slepian information theory&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/f6079YbeF0223e06e7253774454d42da9c6656ea4</link>
    <description>Author(s): Masayuki Ohzeki&lt;br/&gt;&lt;span&gt;Analytic continuation from imaginary-time Green’s functions to real-frequency spectra is a central ill-posed inverse problem in quantum many-body physics. We show that the thermal kernel admits an analytical generalized singular-value structure once its purely dynamical part is separated from the st…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Tue Jul 21, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Masayuki Ohzeki</p><span>Analytic continuation from imaginary-time Green’s functions to real-frequency spectra is a central ill-posed inverse problem in quantum many-body physics. We show that the thermal kernel admits an analytical generalized singular-value structure once its purely dynamical part is separated from the st…</span><br/><p>[APS Open Sci.] Published Tue Jul 21, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Analytical singular-value structure of analytic-continuation kernels from Slepian information theory&lt;/span&gt;</dc:title>
    <dc:creator>Masayuki Ohzeki</dc:creator>
    <dc:date>2026-07-21T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/8yw5-dhd4</dc:identifier>
    <prism:doi>10.1103/8yw5-dhd4</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-07-21T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/f6079YbeF0223e06e7253774454d42da9c6656ea4</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
  <item rdf:about="http://journals.aps.org/apsos/accepted/e9073K11C831bd1fe03b0a485ae00de65c9ab7ff2">
    <title>&lt;span&gt;Artificial intelligence sustains higher strategic tension than humans in chess&lt;/span&gt;</title>
    <link>http://journals.aps.org/apsos/accepted/e9073K11C831bd1fe03b0a485ae00de65c9ab7ff2</link>
    <description>Author(s): Adamo Cerioli, Edward D. Lee, and Vito D. P. Servedio&lt;br/&gt;&lt;span&gt;Strategic decision-making requires balancing immediate opportunities against long-term objectives: a tension fundamental to competitive environments. We investigate this trade-off in chess by analyzing the dynamics of human and AI gameplay through a network-based metric that quantifies piece-to-piec…&lt;/span&gt;&lt;br/&gt;[APS Open Sci.] Published Fri Jul 17, 2026</description>
    <content:encoded><![CDATA[<p>Author(s): Adamo Cerioli, Edward D. Lee, and Vito D. P. Servedio</p><span>Strategic decision-making requires balancing immediate opportunities against long-term objectives: a tension fundamental to competitive environments. We investigate this trade-off in chess by analyzing the dynamics of human and AI gameplay through a network-based metric that quantifies piece-to-piec…</span><br/><p>[APS Open Sci.] Published Fri Jul 17, 2026</p>]]></content:encoded>
    <dc:title>&lt;span&gt;Artificial intelligence sustains higher strategic tension than humans in chess&lt;/span&gt;</dc:title>
    <dc:creator>Adamo Cerioli, Edward D. Lee, and Vito D. P. Servedio</dc:creator>
    <dc:date>2026-07-17T10:00:00+00:00</dc:date>
    <dc:rights>Personal use only, all commercial or other reuse prohibited</dc:rights>
    <dc:source>APS Open Sci.</dc:source>
    <dc:type>article</dc:type>
    <dc:identifier>doi:10.1103/63cv-52fj</dc:identifier>
    <prism:doi>10.1103/63cv-52fj</prism:doi>
    <prism:publicationName>APS Open Science</prism:publicationName>
    <prism:publicationDate>2026-07-17T10:00:00+00:00</prism:publicationDate>
    <prism:url>http://journals.aps.org/apsos/accepted/e9073K11C831bd1fe03b0a485ae00de65c9ab7ff2</prism:url>
    <dc:subject>Regular Articles</dc:subject>
    <prism:section>Regular Articles</prism:section>
  </item>
</rdf:RDF>
