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We report the results of testing gravitational-wave birefringence using the largest population of gravitational-wave events currently available.
1903
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1904
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1905
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Matthew Mewes, “Signals for Lorentz violation in gravitational waves,” Phys. Rev. D 99
1905
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1910
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1911
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2002
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Chong-Sun Chu, Jiro Soda, and Daiske Yoshida, “Gravitational Waves in Axion Dark Matter,” Universe 6
2002
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O. W. Greenberg, “CPT violation implies violation of Lorentz invariance,” Phys. Rev. Lett. 89
2002
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2002
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2002
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2002
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2002
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2003
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V.Alan Kostelecky, “Gravity, Lorentz violation, and the standard model,” Phys. Rev. D 69
2004
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2004
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2006
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2006
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Petr Hořava, “Quantum gravity at a lifshitz point,” Phys. Rev. D 79
2009
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2009
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2009
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2009
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2009
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2009
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2009
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2010
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M. Crisostomi, K. Noui, C. Charmousis, and D. Langlois, “Beyond lovelock gravity: Higher derivative metric theories,” Phys. Rev. D 97
2018
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Atsushi Nishizawa and Tsutomu Kobayashi, “Parity-violating gravity and gw170817,” Phys. Rev. D 98
2018
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Kent Yagi and Huan Yang, “Probing gravitational parity violation with gravitational waves from stellar-mass black hole binaries,” Phys. Rev. D 97
2018
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Stephon H. Alexander and Nicolás Yunes, “Gravitational wave probes of parity violation in compact binary coalescences,” Phys. Rev. D 97
2018
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Aindriú Conroy and Tomi Koivisto, “Parity-violating gravity and GW170817 in non-riemannian cosmology,” Journal of Cosmology and Astroparticle Physics 2019
2019
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2010
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2010
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Anzhong Wang, Qiang Wu, Wen Zhao, and Tao Zhu, “Polarizing primordial gravitational waves by parity violation,” Phys. Rev. D 87
2013
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2014
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2014
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J. Aasi et al. (LIGO Scientific), “Advanced LIGO,” Class. Quant. Grav. 32
2015
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2015
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Jay D. Tasson, “The Standard-Model Extension and Gravitational Tests,” Symmetry 8
2016
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Tim Dietrich, Sebastian Khan, Reetika Dudi, Shasvath J. Kapadia, Prayush Kumar, Alessandro Nagar, Frank Ohme, Francesco Pannarale, Anuradha Samajdar, Sebastiano Bernuzzi, Gregorio Carullo, Walter Del Pozzo, Maria Haney, Charalampos Markakis, Michael Pürrer, Gunnar Riemenschneider, Yoshinta Eka Setyawati, Ka Wa Tsang, and Chris Van Den Broeck, “Matter imprints in waveform models for neutron star binaries: Tidal and self-spin effects,” Phys. Rev. D 99
2019
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C. M. Biwer, Collin D. Capano, Soumi De, Miriam Cabero, Duncan A. Brown, Alexander H. Nitz, and V. Raymond, “Pycbc inference: A python-based parameter estimation toolkit for compact binary coalescence signals,” Publications of the Astronomical Society of the Pacific 131
2019
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Vijay Varma, Scott E. Field, Mark A. Scheel, Jonathan Blackman, Davide Gerosa, Leo C. Stein, Lawrence E. Kidder, and Harald P. Pfeiffer, “Surrogate models for precessing binary black hole simulations with unequal masses,” Phys. Rev. Research 1
2019
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Wen Zhao, Tao Zhu, Jin Qiao, and Anzhong Wang, “Waveform of gravitational waves in the general parity-violating gravities,” Phys. Rev. D 101
2020
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Xian Gao and Xun-Yang Hong, “Propagation of gravitational waves in a cosmological background,” Phys. Rev. D 101
2020
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Katerina Chatziioannou, Maximiliano Isi, Carl-Johan Haster, and Tyson B. Littenberg, “Morphology-independent test of the mixed polarization content of transient gravitational wave signals,” Physical Review D 104
2021
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2021
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Juan Calderón Bustillo, Nicolas Sanchis-Gual, Alejandro Torres-Forné, José A. Font, Avi Vajpeyi, Rory Smith, Carlos Herdeiro, Eugen Radu, and Samson H. W. Leong, “Gw190521 as a merger of proca stars: A potential new vector boson of 8.7 × 10 − 13 eV 8.7\times{}{10}^{-13}\text{ }\mathrm{eV} ,” Phys. Rev. Lett. 126
2021
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Alexander H. Nitz and Collin D. Capano, “GW190521 may be an intermediate-mass ratio inspiral,” The Astrophysical Journal 907
2021
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2021
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2022
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Ajit Kumar Mehta, Alessandra Buonanno, Roberto Cotesta, Abhirup Ghosh, Noah Sennett, and Jan Steinhoff, “Tests of general relativity with gravitational-wave observations using a flexible–theory-independent method,” (2022), 10.48550/arxiv.2203.13937
2022
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2022
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