Topological black hole chemistry in massive gravity with power-Maxwell invariant field

In this paper, asymptotically AdS black hole solutions of massive gravity in the presence of nonlinear electromagnetic field arisen from the power theory of Maxwell invariant are investigated and the associated Euclidean on-shell action is presented. Using the Euclidean on-shell action, the gravitat...

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Main Authors: H Hendi, A Dehghani
Format: Article
Language:English
Published: Isfahan University of Technology 2020-08-01
Series:Iranian Journal of Physics Research
Subjects:
Online Access:http://ijpr.iut.ac.ir/article_1618_ab136081804b86e9a66e068d5bcd043d.pdf
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spelling doaj-84900748464c40b686809b863c2ae89c2020-11-28T12:47:29ZengIsfahan University of TechnologyIranian Journal of Physics Research1682-69572345-36642020-08-0120229330910.47176/ijpr.20.2.362611618Topological black hole chemistry in massive gravity with power-Maxwell invariant fieldH Hendi0A Dehghani11. Department of Physics,School of Science, Shiraz University, Shiraz, Iran 2. Biruni Observatory, School of Science, Shiraz University, Shiraz, Iran1. Department of Physics,School of Science, Shiraz University, Shiraz, Iran 2. Biruni Observatory, School of Science, Shiraz University, Shiraz, IranIn this paper, asymptotically AdS black hole solutions of massive gravity in the presence of nonlinear electromagnetic field arisen from the power theory of Maxwell invariant are investigated and the associated Euclidean on-shell action is presented. Using the Euclidean on-shell action, the gravitational partition function in the canonical ensemble is computed in arbitrary dimensions and then thermodynamic quantities of topological black holes are obtained. By extending the thermodynamic phase space, i.e., treating negative cosmological constant as thermodynamic pressure, the first law of thermodynamics as well as associated Smarr formula are examined. Next, the equation of state of topological black holes is obtained and it is proven that the critical point equation of these solutions can exhibit black hole phase transitions similar to those of van der Waals, van der Waals like and solid/liquid/gas (related to triple point) phase transitions in usual thermodynamic systems. Especially, the van der Waals phase transition is observed in 4 and higher dimensions, van der Waals type phase transition can be seen in 6 and higher dimensions, and phase transitions associated with triple point, i.e., small/intermediate/large black hole phase transition may happen in 6 and higher dimensions.http://ijpr.iut.ac.ir/article_1618_ab136081804b86e9a66e068d5bcd043d.pdfblack hole chemistrymassive gravitypower theory of maxwell invariant
collection DOAJ
language English
format Article
sources DOAJ
author H Hendi
A Dehghani
spellingShingle H Hendi
A Dehghani
Topological black hole chemistry in massive gravity with power-Maxwell invariant field
Iranian Journal of Physics Research
black hole chemistry
massive gravity
power theory of maxwell invariant
author_facet H Hendi
A Dehghani
author_sort H Hendi
title Topological black hole chemistry in massive gravity with power-Maxwell invariant field
title_short Topological black hole chemistry in massive gravity with power-Maxwell invariant field
title_full Topological black hole chemistry in massive gravity with power-Maxwell invariant field
title_fullStr Topological black hole chemistry in massive gravity with power-Maxwell invariant field
title_full_unstemmed Topological black hole chemistry in massive gravity with power-Maxwell invariant field
title_sort topological black hole chemistry in massive gravity with power-maxwell invariant field
publisher Isfahan University of Technology
series Iranian Journal of Physics Research
issn 1682-6957
2345-3664
publishDate 2020-08-01
description In this paper, asymptotically AdS black hole solutions of massive gravity in the presence of nonlinear electromagnetic field arisen from the power theory of Maxwell invariant are investigated and the associated Euclidean on-shell action is presented. Using the Euclidean on-shell action, the gravitational partition function in the canonical ensemble is computed in arbitrary dimensions and then thermodynamic quantities of topological black holes are obtained. By extending the thermodynamic phase space, i.e., treating negative cosmological constant as thermodynamic pressure, the first law of thermodynamics as well as associated Smarr formula are examined. Next, the equation of state of topological black holes is obtained and it is proven that the critical point equation of these solutions can exhibit black hole phase transitions similar to those of van der Waals, van der Waals like and solid/liquid/gas (related to triple point) phase transitions in usual thermodynamic systems. Especially, the van der Waals phase transition is observed in 4 and higher dimensions, van der Waals type phase transition can be seen in 6 and higher dimensions, and phase transitions associated with triple point, i.e., small/intermediate/large black hole phase transition may happen in 6 and higher dimensions.
topic black hole chemistry
massive gravity
power theory of maxwell invariant
url http://ijpr.iut.ac.ir/article_1618_ab136081804b86e9a66e068d5bcd043d.pdf
work_keys_str_mv AT hhendi topologicalblackholechemistryinmassivegravitywithpowermaxwellinvariantfield
AT adehghani topologicalblackholechemistryinmassivegravitywithpowermaxwellinvariantfield
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