Geometrized effective-one-body formalism for extreme-mass-ratio limits: Generic orbits

Chen Zhang, Wen-Biao Han, Xing-Yu Zhong, and Gang Wang
Phys. Rev. D 104, 024050 – Published 19 July 2021

Abstract

Compact objects inspiraling into supermassive black holes, known as extreme-mass-ratio inspirals, are an important source for future space-borne gravitational-wave detectors. When constructing waveform templates, usually the adiabatic approximation is employed to treat the compact object as a test particle for a short duration, and the radiation reaction is reflected in the changes of the constants of motion. However, the mass of the compact object should have contributions to the background. In the present paper, employing the effective-one-body formalism, we analytically calculate the trajectories of a compact object around a massive Kerr black hole with generally three-dimensional orbits and express the fundamental orbital frequencies in explicit forms. In addition, by constructing an approximate “constant” similar to the Carter constant, we transfer the dynamical quantities such as energy, angular momentum, and the “Carter constant” to the semilatus rectum, eccentricity, and orbital inclination with mass-ratio corrections. The linear mass-ratio terms in the formalism may not be sufficient for accurate waveforms, but our analytical method for solving the equations of motion could be useful in various approaches to building waveform models.

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  • Received 4 March 2021
  • Accepted 28 June 2021

DOI:https://doi.org/10.1103/PhysRevD.104.024050

© 2021 American Physical Society

Physics Subject Headings (PhySH)

  1. Research Areas
Gravitation, Cosmology & Astrophysics

Authors & Affiliations

Chen Zhang1,2, Wen-Biao Han1,3,2,4,*, Xing-Yu Zhong1,2, and Gang Wang1,2

  • 1Shanghai Astronomical Observatory, Chinese Academy of Sciences, Shanghai 200030, P. R. China
  • 2School of Astronomy and Space Science, University of Chinese Academy of Sciences Beijing 100049, P. R. China
  • 3School of Fundamental Physics and Mathematical Sciences, Hangzhou Institute for Advanced Study, UCAS, Hangzhou 310024, China
  • 4International Centre for Theoretical Physics Asia-Pacific, Beijing/Hangzhou 310024, China

  • *Corresponding author. wbhan@shao.ac.cn

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Issue

Vol. 104, Iss. 2 — 15 July 2021

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