Completion of metric reconstruction for a particle orbiting a Kerr black hole

Cesar Merlin, Amos Ori, Leor Barack, Adam Pound, and Maarten van de Meent
Phys. Rev. D 94, 104066 – Published 28 November 2016

Abstract

Vacuum perturbations of the Kerr metric can be reconstructed from the corresponding perturbation in either of the two Weyl scalars ψ0 or ψ4, using a procedure described by Chrzanowski and others in the 1970s. More recent work, motivated within the context of self-force physics, extends the procedure to metric perturbations sourced by a particle in a bound geodesic orbit. However, the existing procedure leaves undetermined a certain stationary, axially symmetric piece of the metric perturbation. In the vacuum region away from the particle, this “completion” piece corresponds simply to mass and angular-momentum perturbations of the Kerr background, with amplitudes that are, however, a priori unknown. Here, we present and implement a rigorous method for finding the completion piece. The key idea is to impose continuity, off the particle, of certain gauge-invariant fields constructed from the full (completed) perturbation, in order to determine the unknown amplitude parameters of the completion piece. We implement this method in full for bound (eccentric) geodesic orbits in the equatorial plane of the Kerr black hole. Our results provide a rigorous underpinning of recent results by Friedman et al. for circular orbits and extend them to noncircular orbits.

  • Received 4 September 2016

DOI:https://doi.org/10.1103/PhysRevD.94.104066

© 2016 American Physical Society

Physics Subject Headings (PhySH)

Gravitation, Cosmology & Astrophysics

Authors & Affiliations

Cesar Merlin1, Amos Ori2, Leor Barack1, Adam Pound1, and Maarten van de Meent1

  • 1Mathematical Sciences, University of Southampton, Southampton SO17 1BJ, United Kingdom
  • 2Department of Physics, Technion-Israel Institute of Technology, Haifa 32000, Israel

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Issue

Vol. 94, Iss. 10 — 15 November 2016

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