Black hole superradiance with dark matter accretion

Open Access
Authors
  • L. Hui
  • Y.T.A. Law
  • L. Santoni
  • G. Sun
Publication date 15-05-2023
Journal Physical Review D - Particles, Fields, Gravitation and Cosmology
Article number 104018
Volume | Issue number 107 | 10
Organisations
  • Faculty of Science (FNWI) - Institute of Physics (IoP) - Institute for Theoretical Physics Amsterdam (ITFA)
  • Faculty of Science (FNWI) - Institute of Physics (IoP) - Institute for High Energy Physics (IHEF)
Abstract
Studies of black hole superradiance often focus on the growth of a cloud in isolation, accompanied by the spin-down of the black hole. In this paper, we consider the additional effect of the accretion of matter and angular momentum from the environment. We show that, in many cases, the black hole evolves by drifting along the superradiance threshold, in which case the evolution of its parameters can be described analytically or semianalytically. We quantify the conditions under which accretion can serve as a mechanism to increase the cloud-to-black hole mass ratio, beyond the standard maximum of about 10%. This occurs by a process we call oversuperradiance, whereby accretion effectively feeds the superradiance cloud, by way of the black hole. We give two explicit examples: accretion from a vortex expected in wave dark matter and accretion from a baryonic disk. In the former case, we estimate the accretion rate by using an analytical fit to the asymptotic behavior of the confluent Heun function. Level transition, whereby one cloud level grows while the other shrinks, can be understood in a similar way.
Document type Article
Note © 2023 American Physical Society
Language English
Published at https://doi.org/10.1103/PHYSREVD.107.104018
Downloads
PhysRevD.107.104018 (Final published version)
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