Tests of General Relativity with GWTC-3
The LIGO Scientific Collaboration, the Virgo Collaboration, and the KAGRA Collaboration: R. Abbott, H. Abe, F. Acernese, K. Ackley, N. Adhikari, R. X. Adhikari, V. K. Adkins, V. B. Adya, C. Affeldt, D. Agarwal, M. Agathos, K. Agatsuma, N. Aggarwal, O. D. Aguiar, L. Aiello

TL;DR
This paper tests general relativity using gravitational wave signals from compact binary mergers, finding all observations consistent with GR predictions and setting new bounds on alternative theories.
Contribution
It provides comprehensive tests of GR with the GWTC-3 catalog, including new constraints on deviations and properties of black hole mergers, improving previous bounds and confirming GR's predictions.
Findings
Residuals consistent with detector noise
Post-Newtonian coefficients match GR predictions
No evidence for non-GR polarization modes or dispersion
Abstract
The ever-increasing number of detections of gravitational waves (GWs) from compact binaries by the Advanced LIGO and Advanced Virgo detectors allows us to perform ever-more sensitive tests of general relativity (GR) in the dynamical and strong-field regime of gravity. We perform a suite of tests of GR using the compact binary signals observed during the second half of the third observing run of those detectors. We restrict our analysis to the 15 confident signals that have false alarm rates . In addition to signals consistent with binary black hole (BH) mergers, the new events include GW200115_042309, a signal consistent with a neutron star--BH merger. We find the residual power, after subtracting the best fit waveform from the data for each event, to be consistent with the detector noise. Additionally, we find all the post-Newtonian deformation…
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Taxonomy
TopicsPulsars and Gravitational Waves Research · Astrophysical Phenomena and Observations · Gamma-ray bursts and supernovae
