Thermodynamic description and quasinormal modes of adS black holes in Born-lnfeld massive gravity with a non-abelian hair

Abstract We construct a new class of asymptotically (a)dS black hole solutions of Einstein-Yang-Mills massive gravity in the presence of Born-Infeld nonlinear electrody­ namics. The obtained solutions possess a Coulomb electric charge, massive term and a non-abelian hair as well. We calculate the co...

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Main Authors: Seyed Hossein Hendi, Mehrab Momennia
Format: Article
Language:English
Published: SpringerOpen 2019-10-01
Series:Journal of High Energy Physics
Subjects:
Online Access:http://link.springer.com/article/10.1007/JHEP10(2019)207
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spelling doaj-9e62f4ab359247a9b594ab76f699fbaf2020-11-25T04:08:39ZengSpringerOpenJournal of High Energy Physics1029-84792019-10-0120191013310.1007/JHEP10(2019)207Thermodynamic description and quasinormal modes of adS black holes in Born-lnfeld massive gravity with a non-abelian hairSeyed Hossein Hendi0Mehrab Momennia1Phymcs Department and Biruni Obsevatory, College of Sciences, Shiroz UniversityPhymcs Department and Biruni Obsevatory, College of Sciences, Shiroz UniversityAbstract We construct a new class of asymptotically (a)dS black hole solutions of Einstein-Yang-Mills massive gravity in the presence of Born-Infeld nonlinear electrody­ namics. The obtained solutions possess a Coulomb electric charge, massive term and a non-abelian hair as well. We calculate the conserved and thermodynamic quantities, and investigate the validity of the first law of thermodynamics. Also, we investigate thermal stability conditions by using the sign of heat capacity through canonical ensemble. Next, we consider the cosmological constant as a thermodynamical pressure and study the van der Waals like phase transition of black holes in the extended phase space thermodynamics. Our results indicate the existence of a phase transition which is affected by the parameters of theory. Finally, we consider a massless scalar perturbation in the background of asymptotically adS solutions and calculate the quasinormal modes by employing the pseu­ dospectral method. The imaginary part of quasinormal frequencies is the time scale of a thermal state (in the conformal field theory) for the approach to thermal equilibrium.http://link.springer.com/article/10.1007/JHEP10(2019)207Black HolesClassical Theories of GravitySpacetime Singularities
collection DOAJ
language English
format Article
sources DOAJ
author Seyed Hossein Hendi
Mehrab Momennia
spellingShingle Seyed Hossein Hendi
Mehrab Momennia
Thermodynamic description and quasinormal modes of adS black holes in Born-lnfeld massive gravity with a non-abelian hair
Journal of High Energy Physics
Black Holes
Classical Theories of Gravity
Spacetime Singularities
author_facet Seyed Hossein Hendi
Mehrab Momennia
author_sort Seyed Hossein Hendi
title Thermodynamic description and quasinormal modes of adS black holes in Born-lnfeld massive gravity with a non-abelian hair
title_short Thermodynamic description and quasinormal modes of adS black holes in Born-lnfeld massive gravity with a non-abelian hair
title_full Thermodynamic description and quasinormal modes of adS black holes in Born-lnfeld massive gravity with a non-abelian hair
title_fullStr Thermodynamic description and quasinormal modes of adS black holes in Born-lnfeld massive gravity with a non-abelian hair
title_full_unstemmed Thermodynamic description and quasinormal modes of adS black holes in Born-lnfeld massive gravity with a non-abelian hair
title_sort thermodynamic description and quasinormal modes of ads black holes in born-lnfeld massive gravity with a non-abelian hair
publisher SpringerOpen
series Journal of High Energy Physics
issn 1029-8479
publishDate 2019-10-01
description Abstract We construct a new class of asymptotically (a)dS black hole solutions of Einstein-Yang-Mills massive gravity in the presence of Born-Infeld nonlinear electrody­ namics. The obtained solutions possess a Coulomb electric charge, massive term and a non-abelian hair as well. We calculate the conserved and thermodynamic quantities, and investigate the validity of the first law of thermodynamics. Also, we investigate thermal stability conditions by using the sign of heat capacity through canonical ensemble. Next, we consider the cosmological constant as a thermodynamical pressure and study the van der Waals like phase transition of black holes in the extended phase space thermodynamics. Our results indicate the existence of a phase transition which is affected by the parameters of theory. Finally, we consider a massless scalar perturbation in the background of asymptotically adS solutions and calculate the quasinormal modes by employing the pseu­ dospectral method. The imaginary part of quasinormal frequencies is the time scale of a thermal state (in the conformal field theory) for the approach to thermal equilibrium.
topic Black Holes
Classical Theories of Gravity
Spacetime Singularities
url http://link.springer.com/article/10.1007/JHEP10(2019)207
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AT mehrabmomennia thermodynamicdescriptionandquasinormalmodesofadsblackholesinbornlnfeldmassivegravitywithanonabelianhair
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