Superradiant scattering in Lorentz-violating gravity

Fuente: arXiv
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Autori principali: Herrero-Valea, M., Simon-Felix, E.
Natura: Preprint
Pubblicazione: 2024
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author Herrero-Valea, M.
Simon-Felix, E.
author_facet Herrero-Valea, M.
Simon-Felix, E.
contents Black holes in Lorentz violating gravity enjoy a double horizon structure which resembles that of the Kerr solution in General Relativity. Moreover, when a scalar field with a modified dispersion relation is coupled to these backgrounds, an on-shell mode with negative energy becomes possible in the region in between the horizons. Both properties together call for the possibility of extracting energy from the black hole by scattering of waves, even if the space-time is stationary. Here, we perform such scattering explicitly in the frequency domain, showing that indeed, a superradiant effect, leading to energy extraction, can be observed for modes with $l>0$ in spherical symmetry. In particular, we show that the mode $l=1$ can display a reflectivity exceeding 700% for certain values of the Lorentz violating scale. This leads us to conjecture the instability of these space-times against such perturbations, although astrophysical size objects should have long life-times. Our results are not unique to Lorentz violating gravity and can be extended to any setting where modified dispersion relations are present, such as analogue gravity.
format Preprint
id arxiv_https___arxiv_org_abs_2410_01370
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Superradiant scattering in Lorentz-violating gravity
Herrero-Valea, M.
Simon-Felix, E.
General Relativity and Quantum Cosmology
High Energy Physics - Theory
Black holes in Lorentz violating gravity enjoy a double horizon structure which resembles that of the Kerr solution in General Relativity. Moreover, when a scalar field with a modified dispersion relation is coupled to these backgrounds, an on-shell mode with negative energy becomes possible in the region in between the horizons. Both properties together call for the possibility of extracting energy from the black hole by scattering of waves, even if the space-time is stationary. Here, we perform such scattering explicitly in the frequency domain, showing that indeed, a superradiant effect, leading to energy extraction, can be observed for modes with $l>0$ in spherical symmetry. In particular, we show that the mode $l=1$ can display a reflectivity exceeding 700% for certain values of the Lorentz violating scale. This leads us to conjecture the instability of these space-times against such perturbations, although astrophysical size objects should have long life-times. Our results are not unique to Lorentz violating gravity and can be extended to any setting where modified dispersion relations are present, such as analogue gravity.
title Superradiant scattering in Lorentz-violating gravity
topic General Relativity and Quantum Cosmology
High Energy Physics - Theory
url https://arxiv.org/abs/2410.01370