Superradiance of rotating black holes surrounded by dark matter

Fuente: arXiv
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Main Authors: Liu, Quan-Xu, Hu, Ya-Peng, Sui, Tao-Tao, An, Yu-Sen
Format: Preprint
Published: 2024
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author Liu, Quan-Xu
Hu, Ya-Peng
Sui, Tao-Tao
An, Yu-Sen
author_facet Liu, Quan-Xu
Hu, Ya-Peng
Sui, Tao-Tao
An, Yu-Sen
contents In rotating black hole background surrounded by dark matter, we investigated the super-radiant phenomenon of massive scalar field and its associated instability.Using the method of asymptotic matching, we computed the amplification factor of scalar wave scattering to assess the strength of super-radiance. We discussed the influence of dark matter density on amplification factor in this black hole background. Our result indicates that the presence of dark matter has suppressive influence on black hole super-radiance. We also computed the net extracted energy to further support this result. Finally, we analyzed the super-radiant instability caused by massive scalar field using the black hole bomb mechanism and found that the presence of dark matter has no influence on the super-radiant instability condition.
format Preprint
id arxiv_https___arxiv_org_abs_2406_04611
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Superradiance of rotating black holes surrounded by dark matter
Liu, Quan-Xu
Hu, Ya-Peng
Sui, Tao-Tao
An, Yu-Sen
General Relativity and Quantum Cosmology
In rotating black hole background surrounded by dark matter, we investigated the super-radiant phenomenon of massive scalar field and its associated instability.Using the method of asymptotic matching, we computed the amplification factor of scalar wave scattering to assess the strength of super-radiance. We discussed the influence of dark matter density on amplification factor in this black hole background. Our result indicates that the presence of dark matter has suppressive influence on black hole super-radiance. We also computed the net extracted energy to further support this result. Finally, we analyzed the super-radiant instability caused by massive scalar field using the black hole bomb mechanism and found that the presence of dark matter has no influence on the super-radiant instability condition.
title Superradiance of rotating black holes surrounded by dark matter
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2406.04611