Literature DB >> 29341737

Superradiant Instability and Backreaction of Massive Vector Fields around Kerr Black Holes.

William E East1, Frans Pretorius2.   

Abstract

We study the growth and saturation of the superradiant instability of a complex, massive vector (Proca) field as it extracts energy and angular momentum from a spinning black hole, using numerical solutions of the full Einstein-Proca equations. We concentrate on a rapidly spinning black hole (a=0.99) and the dominant m=1 azimuthal mode of the Proca field, with real and imaginary components of the field chosen to yield an axisymmetric stress-energy tensor and, hence, spacetime. We find that in excess of 9% of the black hole's mass can be transferred into the field. In all cases studied, the superradiant instability smoothly saturates when the black hole's horizon frequency decreases to match the frequency of the Proca cloud that spontaneously forms around the black hole.

Year:  2017        PMID: 29341737     DOI: 10.1103/PhysRevLett.119.041101

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  1 in total

1.  Probing the nature of black holes: Deep in the mHz gravitational-wave sky.

Authors:  Vishal Baibhav; Leor Barack; Emanuele Berti; Béatrice Bonga; Richard Brito; Vitor Cardoso; Geoffrey Compère; Saurya Das; Daniela Doneva; Juan Garcia-Bellido; Lavinia Heisenberg; Scott A Hughes; Maximiliano Isi; Karan Jani; Chris Kavanagh; Georgios Lukes-Gerakopoulos; Guido Mueller; Paolo Pani; Antoine Petiteau; Surjeet Rajendran; Thomas P Sotiriou; Nikolaos Stergioulas; Alasdair Taylor; Elias Vagenas; Maarten van de Meent; Niels Warburton; Barry Wardell; Vojtěch Witzany; Aaron Zimmerman
Journal:  Exp Astron (Dordr)       Date:  2021-09-03       Impact factor: 2.012

  1 in total

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