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publicationcn.html
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<!DOCTYPE HTML>
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<html>
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<title>徐睿的主页</title>
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<div id="page-wrapper">
<!-- Header -->
<section id="header">
<div class="container">
<!-- Logo -->
<!-- <h1 id="logo"><a>徐睿的主页/Rui Xu's Home Page</a></h1> -->
<!-- <p>Rui Xu's Home Page</p> -->
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<li><a class="icon solid fa-home" href="indexcn.html"><span>主页</span></a></li>
<li><a class="icon solid fa-list" href="cvcn.html"><span>简历</span></a></li>
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</section>
<!-- List -->
<section id="cv">
<div class="container">
<ol>
<li>Z.-F. Mai, <strong>R. Xu</strong>, D. Liang, and L. Shao, <i>On the extended thermodynamics of the bumblebee black holes</i>, <a href="https://arxiv.org/abs/2304.08030">arXiv:2304.08030</a></li>
<li>D. Liang, <strong>R. Xu</strong>, Z.-F. Mai, and L. Shao, <i>Probing vector hair of black holes with extreme mass ratio inspirals</i>, Phys. Rev. D 107, 044053 (2023), <a href="https://arxiv.org/abs/2212.09346">arXiv:2212.09346</a></li>
<li><strong>R. Xu</strong>, D. Liang and L. Shao, <i>Bumblebee black holes in light of Event Horizon Telescope observations</i>, Astrophys. J. 945, 148 (2023), <a href="https://arxiv.org/abs/2302.05671">arXiv:2302.05671</a></li>
<li><strong>R. Xu</strong>, D. Liang and L. Shao, <i>Static spherical vacuum solutions in the bumblebee gravity model</i>, Phys. Rev. D 107, 024011 (2023), <a href="https://arxiv.org/abs/2209.02209">arXiv:2209.02209</a></li>
<li>D. Liang, <strong>R. Xu</strong> and L. Shao, <i>Polarizations of gravitational waves in the bumblebee gravity model</i>, Phys. Rev. D 106, 124019 (2022), <a href="https://arxiv.org/abs/2207.14423">arXiv:2207.14423</a></li>
<li><strong>R. Xu</strong>, <i>A 4-parameter black-hole solution in the bumblebee gravity model</i>, Proceedings of the Ninth Meeting on CPT and Lorentz Symmetry, ed. R. Lehnert (in press), <a href="https://arxiv.org/abs/2301.12666">arXiv:2301.1266</a></li>
<li>H.B. Li, Y. Gao, L. Shao, R.X. Xu, and <strong>R. Xu</strong>, <i>Oscillation modes and gravitational waves from strangeon stars</i>, Mon. Not. R. Astron. Soc. 516, 6172 (2022), <a href="https://arxiv.org/abs/2206.09407">arXiv:2206.09407</a></li>
<li>L. Shao and <strong>R. Xu</strong>, <i>Introduction to the gravitational waves from the inspiral of compact binaries</i>, Lecture Note of the Gravity Summer School at Zhejiang University of Technology in July 2021, eds. A. Wang and T. Zhu (Science Press, Beijing, in press)</li>
<li><strong>R. Xu</strong>, Y. Gao and L. Shao, <i>Neutron stars in massive scalar-Gauss-Bonnet gravity: Spherical structure and
time-independent perturbations</i>, Phys. Rev. D 105, 024003 (2022), <a href="https://arxiv.org/abs/2111.06561">arXiv:2111.06561</a></li>
<li>Z. Hu, Y. Gao, <strong>R. Xu</strong>, and L. Shao, <i>Scalarized neutron stars in massive scalar-tensor gravity: X-ray pulsars and
tidal deformability</i>, Phys. Rev. D 104, 104014 (2021), <a href="https://arxiv.org/abs/2109.13453">arXiv:2109.13453</a></li>
<li><strong>R. Xu</strong>, Y. Gao and L. Shao, <i>Precession of spheroids under Lorentz violation and observational consequences
for neutron stars</i>, Phys. Rev. D 103, 084028 (2021), <a href="https://arxiv.org/abs/2012.01320">arXiv:2012.01320</a></li>
<li><strong>R. Xu</strong>, Y. Gao and L. Shao, <i>Signatures of Lorentz violation in continuous gravitational-wave spectra of
ellipsoidal neutron stars</i>, Galaxies 9, 12 (2021), winner for the Galaxies 2022 Best Paper Award, <a href="https://arxiv.org/abs/2101.09431">arXiv:2101.09431</a></li>
<li><strong>R. Xu</strong>, Y. Gao and L. Shao, <i>Strong-field effects in massive scalar-tensor gravity for slowly spinning neutron
stars and application to x-ray pulsar pulse profiles</i>, Phys. Rev. D 102, 064057 (2020), <a href="https://arxiv.org/abs/2007.10080">arXiv:2007.10080</a></li>
<li><strong>R. Xu</strong>, J. Zhao and L. Shao, <i>Neutron star structure in the minimal gravitational Standard-Model Extension
and the implication to continuous gravitational waves</i>, Phys. Lett. B 803, 135283 (2020), <a href="https://arxiv.org/abs/1909.10372">arXiv:1909.10372</a></li>
<li>Y. Gao, L. Shao, <strong>R. Xu</strong>, L. Sun, C. Liu and R.-X. Xu, <i>Triaxially-deformed freely-precessing neutron stars: continuous electromagnetic and gravitational radiation</i>, Mon. Not. R. Astron. Soc. 498, 1826 (2020), <a href="https://arxiv.org/abs/2007.02528">arXiv:2007.02528</a></li>
<li><strong>R. Xu</strong>, <i>Modifications to plane gravitational waves from minimal Lorentz violation</i>, Symmetry 11, 1318 (2019), <a href="https://arxiv.org/abs/1910.09762">arXiv:1910.09762</a></li>
<li><strong>R. Xu</strong>, <i>Spacetime nonmetricity and Lorentz violation</i>, Proceedings of the
Eighth Meeting on CPT and Lorentz Symmetry, ed. Ralf Lehnert (World Scientific, 2020)</li>
<li>Z. Xiao, R. Lehnert, W.M. Snow and <strong>R. Xu</strong>, <i>Constraining spacetime nonmetricity with Lorentz-violation methods</i>, J. Phys.: Conf. Ser. 952, 012014 (2018)</li>
<li>R. Lehnert, W.M. Snow, Z. Xiao and <strong>R. Xu</strong>, <i>Constraining spacetime nonmetricity with neutron spin rotation in liquid 4He</i>, Phys. Lett. B 772, 865 (2017), <a href="https://arxiv.org/abs/1707.09630">arXiv:1707.09630</a></li>
<li>J. Foster, V.A. Kostelecký and <strong>R. Xu</strong>, <i>Constraints on nonmetricity from bounds on Lorentz violation</i>, Phys. Rev. D 95, 084033 (2017), <a href="https://arxiv.org/abs/1612.08744">arXiv:1612.08744</a></li>
<li><strong>R. Xu</strong>, <i>Looking for Lorentz violation in short-range gravity</i>, Proceedings of the
Seventh Meeting on CPT and Lorentz Symmetry, ed. V.A. Kostelecký (World Scientific, 2017), <a href="https://arxiv.org/abs/1610.09960">arXiv:1610.09960</a></li>
<li>C.G. Shao et al., <i>Combined search for Lorentz violation in short-range gravity</i>, Phys. Rev. Lett. 117, 071102 (2016), <a href="https://arxiv.org/abs/1607.06095">arXiv:1607.06095</a></li>
<li>Q. Bailey, V.A. Kostelecký and <strong>R. Xu</strong>, <i>Short-range gravity and Lorentz violation</i>, Phys. Rev. D 91, 022006 (2015), <a href="https://arxiv.org/abs/1410.6162">arXiv:1410.6162</a></li>
</ol>
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