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Gravitational waves from the quasi-circular inspiral of compact binaries in Einstein-aether theory

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arxiv 1911.10278 v3 pith:UD3NGJDN submitted 2019-11-22 gr-qc hep-phhep-th

Gravitational waves from the quasi-circular inspiral of compact binaries in Einstein-aether theory

classification gr-qc hep-phhep-th
keywords einstein-aethergravitationalallowanalyticallyapproximationbinaryframeworkinspiral
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study gravitational waves emitted by a binary system of non-spinning bodies in a quasi-circular inspiral within the framework of Einstein-aether theory. In particular, we compute explicitly and analytically the expressions for the time-domain and frequency-domain waveforms, gravitational wave polarizations, and response functions for both ground- and space-based detectors in the post-Newtonian approximation. We find that, when going beyond leading-order in the post-Newtonian approximation, the non-Einsteinian polarization modes contain terms that depend on both the first and the second harmonics of the orbital phase. We also calculate analytically the corresponding parameterized post-Einsteinian parameters, generalizing the existing framework to allow for different propagation speeds among scalar, vector and tensor modes, without assumptions about the magnitude of its coupling parameters, and meanwhile allowing the binary system to have relative motions with respect to the aether field. Such results allow for the easy construction of Einstein-aether templates that could be used in Bayesian tests of General Relativity in the future.

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Cited by 3 Pith papers

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    Bayesian analysis of GW170817 with PPE framework and EM polarization constraints shows mild preference for scalar mode in quadrupole harmonics and improves bounds on non-GR parameters by up to 60%.

  3. The Science of the Einstein Telescope

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