Gravitational Spin-Orbit Coupling through Third-Subleading Post-Newtonian Order: From First-Order Self-Force to Arbitrary Mass Ratios

Physical Review Letters
Andrea AntonelliJustin Vines

Abstract

Exploiting simple yet remarkable properties of relativistic gravitational scattering, we use first-order self-force (linear-in-mass-ratio) results to obtain arbitrary-mass-ratio results for the complete third-subleading post-Newtonian (4.5PN) corrections to the spin-orbit sector of spinning-binary conservative dynamics, for generic (bound or unbound) orbits and spin orientations. We thereby improve important ingredients of models of gravitational waves from spinning binaries, and we demonstrate the improvement in accuracy by comparing against aligned-spin numerical simulations of binary black holes.

References

Jun 28, 2011·Physical Review Letters·C W F EverittS Wang
May 1, 2012·Physical Review Letters·Thibault DamourChristian Reisswig
Nov 7, 2014·Physical Review Letters·Mark HannamMichael Pürrer
May 5, 2018·Living Reviews in Relativity·B P AbbottUNKNOWN KAGRA Collaboration, LIGO Scientific Collaboration and Virgo Collaboration
Oct 3, 2018·Reports on Progress in Physics·Leor Barack, Adam Pound
Jul 20, 2019·Physical Review Letters·Stefano FoffaWilliam J Torres Bobadilla
Dec 24, 2019·Physical Review Letters·Donato BiniAndrea Geralico

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Citations

May 15, 2021·Physical Review Letters·Zvi BernMao Zeng
Jun 11, 2021·Physical Review Letters·Gustav Uhre JakobsenJan Steinhoff

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