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Higher-order tail contributions to the energy and angular momentum fluxes in a two-body scattering process

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arxiv 2108.05445 v2 pith:G6VRBROJ submitted 2021-08-11 gr-qc

classification gr-qc
keywords contributionsgravitationaltermsangulareffectsenergyfluxeshigher-order
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The need for more and more accurate gravitational wave templates requires taking into account all possible contributions to the emission of gravitational radiation from a binary system. Therefore, working within a multipolar-post-Minkowskian framework to describe the gravitational wave field in terms of the source multipole moments, the dominant instantaneous effects should be supplemented by hereditary contributions arising from nonlinear interactions between the multipoles. The latter effects are referred to as tails being described in terms of integrals depending on the past history of the source. We compute higher-order tail (i.e., tail-of-tail and tail-squared) contributions to both energy and angular momentum fluxes and their averaged values along hyperboliclike orbits at the leading post-Newtonian approximation, using harmonic coordinates and working in the Fourier domain. Due to the increasing level of accuracy recently achieved in the determination of the scattering angle in a two-body system by several complementary approaches, the knowledge of these terms will provide useful information to compare results from different formalisms.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Third post-Newtonian dynamics for eccentric orbits and aligned spins in the effective-one-body waveform model SEOBNRv5EHM

    gr-qc 2024-12 conditional novelty 7.0 of 10

    The authors obtain, for the first time, 3PN-accurate eccentric-orbit fluxes, radiation-reaction force, and waveform modes in the effective-one-body formalism, and use them to build the SEOBNRv5EHM inspiral model.

  2. Dictionary revision for mapping boundary data to bound states

    gr-qc 2025-05 conditional novelty 5.0 of 10

    A revised boundary-to-bound dictionary, using p_inf^2 -> p_inf^2 e^(-i pi), makes fourth-order post-Minkowskian bound-orbit observables real and matches numerical relativity binding energies for mass ratios 1 and 10.

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