Quasinormal modes of regular black holes surrounded by skewed dark matter distributions

Fuente: arXiv
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Hauptverfasser: Lan, Chen, Tian, Ying-Lei, Yang, Hao, Zhang, Zhen-Xiao, Miao, Yan-Gang
Format: Preprint
Veröffentlicht: 2025
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author Lan, Chen
Tian, Ying-Lei
Yang, Hao
Zhang, Zhen-Xiao
Miao, Yan-Gang
author_facet Lan, Chen
Tian, Ying-Lei
Yang, Hao
Zhang, Zhen-Xiao
Miao, Yan-Gang
contents Regular black holes, nonsingular solutions to gravitational collapse with quantum corrections, offer a compelling alternative to classical black holes with curvature singularities. In this work, we investigate how the presence of skewed dark matter distributions outside the innermost stable circular orbit of regular black holes modifies the gravitational wave signals emitted by such objects. Rather than introducing corrections directly into an effective potential, we model the influence of dark matter through metric corrections, allowing a full control over the spatial distribution and abundance of dark matter. We demonstrate that a skewed normal profile generically introduces shallow potential wells or secondary barriers in the effective potential of perturbation equations, depending sensitively on the type of perturbations: scalar, spinor, or tensor. These modifications lead to distinctive quasinormal mode features, including long-lived modes, echo effects, and in some cases, altered stability behaviors. Notably, the axial and polar sectors of tensor field perturbations respond asymmetrically to identical dark matter profiles, revealing a deeper structural distinction in their perturbation dynamics. These results provide a theoretical framework for probing regular black holes in the dark matter environment through gravitational wave observations.
format Preprint
id arxiv_https___arxiv_org_abs_2507_21414
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Quasinormal modes of regular black holes surrounded by skewed dark matter distributions
Lan, Chen
Tian, Ying-Lei
Yang, Hao
Zhang, Zhen-Xiao
Miao, Yan-Gang
General Relativity and Quantum Cosmology
High Energy Physics - Theory
Regular black holes, nonsingular solutions to gravitational collapse with quantum corrections, offer a compelling alternative to classical black holes with curvature singularities. In this work, we investigate how the presence of skewed dark matter distributions outside the innermost stable circular orbit of regular black holes modifies the gravitational wave signals emitted by such objects. Rather than introducing corrections directly into an effective potential, we model the influence of dark matter through metric corrections, allowing a full control over the spatial distribution and abundance of dark matter. We demonstrate that a skewed normal profile generically introduces shallow potential wells or secondary barriers in the effective potential of perturbation equations, depending sensitively on the type of perturbations: scalar, spinor, or tensor. These modifications lead to distinctive quasinormal mode features, including long-lived modes, echo effects, and in some cases, altered stability behaviors. Notably, the axial and polar sectors of tensor field perturbations respond asymmetrically to identical dark matter profiles, revealing a deeper structural distinction in their perturbation dynamics. These results provide a theoretical framework for probing regular black holes in the dark matter environment through gravitational wave observations.
title Quasinormal modes of regular black holes surrounded by skewed dark matter distributions
topic General Relativity and Quantum Cosmology
High Energy Physics - Theory
url https://arxiv.org/abs/2507.21414