Quasinormal modes for non-minimally coupled scalar fields in regular black hole spacetimes: Grey-body factors, area spectrum and shadow radius

Black hole perturbation theory is a useful approach to study interactions between black holes and fundamental fields. A particular class of black hole solutions arising out of modification of Einstein’s general theory of relativity are regular black holes (RBHs) which can be constructed using a nonl...

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Veröffentlicht in:Annals of physics 2021-11, Vol.434, p.168603, Article 168603
Hauptverfasser: Mahdavian Yekta, Davood, Karimabadi, Majid, Alavi, S.A.
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Alavi, S.A.
description Black hole perturbation theory is a useful approach to study interactions between black holes and fundamental fields. A particular class of black hole solutions arising out of modification of Einstein’s general theory of relativity are regular black holes (RBHs) which can be constructed using a nonlinear electrodynamic Lagrangian. Because of their importance, we are interested in studying the behavior of three kinds of such RBHs under perturbations generated by an external field. Indeed, we investigate the quasinormal modes (QNMs) of a massive scalar field propagating near the RBHs which is non-minimally coupled to the Ricci scalar-tensor of background geometry. We will attempt to find the low-lying quasinormal frequencies of the perturbations by using WKB approximation. We shall also study the relationship between the QNMs and some characteristic properties of black holes such as grey-body factors, area quantization, and shadow radius.
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subjects Area quantization
BLACK HOLES
CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS
ELECTRODYNAMICS
GEOMETRY
Grey-body factor
LAGRANGIAN FUNCTION
QUANTIZATION
Quasinormal modes
Regular black holes
SCALAR FIELDS
SCALARS
Shadow radius
SPECTRA
TENSORS
WKB APPROXIMATION
WKB method
title Quasinormal modes for non-minimally coupled scalar fields in regular black hole spacetimes: Grey-body factors, area spectrum and shadow radius
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