Black branes and black strings in the astrophysical and cosmological context

We consider Kaluza–Klein models where internal spaces are compact flat or curved Einstein spaces. This background is perturbed by a compact gravitating body with the dust-like equation of state (EoS) in the external/our space and an arbitrary EoS parameter Ω in the internal space. Without imposing a...

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Main Authors: Özgür Akarsu, Alexey Chopovsky, Alexander Zhuk
Format: Article
Language:English
Published: Elsevier 2018-03-01
Series:Physics Letters B
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S0370269318300303
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spelling doaj-b9bc1cfe6dec456d9c26478eacf5bb0d2020-11-24T23:39:26ZengElsevierPhysics Letters B0370-26931873-24452018-03-01778C19019610.1016/j.physletb.2018.01.022Black branes and black strings in the astrophysical and cosmological contextÖzgür Akarsu0Alexey Chopovsky1Alexander Zhuk2Department of Physics, İstanbul Technical University, 34469 Maslak, İstanbul, TurkeyAstronomical Observatory, Odessa National University, Dvoryanskaya st. 2, Odessa 65082, UkraineDepartment of Physics, İstanbul Technical University, 34469 Maslak, İstanbul, TurkeyWe consider Kaluza–Klein models where internal spaces are compact flat or curved Einstein spaces. This background is perturbed by a compact gravitating body with the dust-like equation of state (EoS) in the external/our space and an arbitrary EoS parameter Ω in the internal space. Without imposing any restrictions on the form of the perturbed metric and the distribution of the perturbed energy densities, we perform the general analysis of the Einstein and conservation equations in the weak-field limit. All conclusions follow from this analysis. For example, we demonstrate that the perturbed model is static and perturbed metric preserves the block-diagonal form. In a particular case Ω=−1/2, the found solution corresponds to the weak-field limit of the black strings/branes. The black strings/branes are compact gravitating objects which have the topology (four-dimensional Schwarzschild spacetime) × (d-dimensional internal space) with d≥1. We present the arguments in favour of these objects. First, they satisfy the gravitational tests for the parameterized post-Newtonian parameter γ at the same level of accuracy as General Relativity. Second, they are preferable from the thermodynamical point of view. Third, averaging over the Universe, they do not destroy the stabilization of the internal space. These are the astrophysical and cosmological aspects of the black strings/branes.http://www.sciencedirect.com/science/article/pii/S0370269318300303Multidimensional modelsKaluza–Klein modelsWeak-field limitEinstein spacesBlack strings/branesGravitational tests
collection DOAJ
language English
format Article
sources DOAJ
author Özgür Akarsu
Alexey Chopovsky
Alexander Zhuk
spellingShingle Özgür Akarsu
Alexey Chopovsky
Alexander Zhuk
Black branes and black strings in the astrophysical and cosmological context
Physics Letters B
Multidimensional models
Kaluza–Klein models
Weak-field limit
Einstein spaces
Black strings/branes
Gravitational tests
author_facet Özgür Akarsu
Alexey Chopovsky
Alexander Zhuk
author_sort Özgür Akarsu
title Black branes and black strings in the astrophysical and cosmological context
title_short Black branes and black strings in the astrophysical and cosmological context
title_full Black branes and black strings in the astrophysical and cosmological context
title_fullStr Black branes and black strings in the astrophysical and cosmological context
title_full_unstemmed Black branes and black strings in the astrophysical and cosmological context
title_sort black branes and black strings in the astrophysical and cosmological context
publisher Elsevier
series Physics Letters B
issn 0370-2693
1873-2445
publishDate 2018-03-01
description We consider Kaluza–Klein models where internal spaces are compact flat or curved Einstein spaces. This background is perturbed by a compact gravitating body with the dust-like equation of state (EoS) in the external/our space and an arbitrary EoS parameter Ω in the internal space. Without imposing any restrictions on the form of the perturbed metric and the distribution of the perturbed energy densities, we perform the general analysis of the Einstein and conservation equations in the weak-field limit. All conclusions follow from this analysis. For example, we demonstrate that the perturbed model is static and perturbed metric preserves the block-diagonal form. In a particular case Ω=−1/2, the found solution corresponds to the weak-field limit of the black strings/branes. The black strings/branes are compact gravitating objects which have the topology (four-dimensional Schwarzschild spacetime) × (d-dimensional internal space) with d≥1. We present the arguments in favour of these objects. First, they satisfy the gravitational tests for the parameterized post-Newtonian parameter γ at the same level of accuracy as General Relativity. Second, they are preferable from the thermodynamical point of view. Third, averaging over the Universe, they do not destroy the stabilization of the internal space. These are the astrophysical and cosmological aspects of the black strings/branes.
topic Multidimensional models
Kaluza–Klein models
Weak-field limit
Einstein spaces
Black strings/branes
Gravitational tests
url http://www.sciencedirect.com/science/article/pii/S0370269318300303
work_keys_str_mv AT ozgurakarsu blackbranesandblackstringsintheastrophysicalandcosmologicalcontext
AT alexeychopovsky blackbranesandblackstringsintheastrophysicalandcosmologicalcontext
AT alexanderzhuk blackbranesandblackstringsintheastrophysicalandcosmologicalcontext
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