Stability Analysis of Circular Geodesics in Dyonic Dilatonic Black Hole Spacetimes

Fuente: arXiv
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Main Authors: Boshkayev, Kuantay, Takey, Gulnaz, Ivashchuk, Vladimir, Malybayev, Algis, Nurbakova, Guliya, Urazalina, Ainur
Format: Preprint
Published: 2024
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author Boshkayev, Kuantay
Takey, Gulnaz
Ivashchuk, Vladimir
Malybayev, Algis
Nurbakova, Guliya
Urazalina, Ainur
author_facet Boshkayev, Kuantay
Takey, Gulnaz
Ivashchuk, Vladimir
Malybayev, Algis
Nurbakova, Guliya
Urazalina, Ainur
contents This research investigates a non-extreme dyonic-like dilatonic charged black hole solution within a four-dimensional gravity model. This model incorporates two scalar (dilaton) fields and two Abelian vector fields, with interactions between the scalar and vector fields mediated by exponential terms involving two dilatonic coupling vectors. The solution is characterized by a dimensionless parameter $a$ (where $0 < a < 2$), which is specifically defined as a function of the dilatonic coupling vectors. The paper further explores solutions for timelike and null circular geodesics, which are crucial for understanding various astrophysical scenarios, including the quasinormal modes of different test fields in the eikonal approximation. For all values of $a$ the innermost stable circular orbit (ISCO) are found by means of reducing the problem to the solution of fourth order polynomial equation.
format Preprint
id arxiv_https___arxiv_org_abs_2411_15006
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Stability Analysis of Circular Geodesics in Dyonic Dilatonic Black Hole Spacetimes
Boshkayev, Kuantay
Takey, Gulnaz
Ivashchuk, Vladimir
Malybayev, Algis
Nurbakova, Guliya
Urazalina, Ainur
General Relativity and Quantum Cosmology
This research investigates a non-extreme dyonic-like dilatonic charged black hole solution within a four-dimensional gravity model. This model incorporates two scalar (dilaton) fields and two Abelian vector fields, with interactions between the scalar and vector fields mediated by exponential terms involving two dilatonic coupling vectors. The solution is characterized by a dimensionless parameter $a$ (where $0 < a < 2$), which is specifically defined as a function of the dilatonic coupling vectors. The paper further explores solutions for timelike and null circular geodesics, which are crucial for understanding various astrophysical scenarios, including the quasinormal modes of different test fields in the eikonal approximation. For all values of $a$ the innermost stable circular orbit (ISCO) are found by means of reducing the problem to the solution of fourth order polynomial equation.
title Stability Analysis of Circular Geodesics in Dyonic Dilatonic Black Hole Spacetimes
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2411.15006