On Einstein-non linear-Maxwell-Yukawa de-Sitter black hole thermodynamics

We investigate the thermodynamics of the Einstein-non linear-Maxwell-Yukawa black hole solution in de Sitter spacetime. After presenting the black hole solution and its horizons, we use different thermodynamical points of view to probe the phase structure of such a black hole, ranging from local, gl...

Full description

Bibliographic Details
Main Authors: M. Chabab, H. El Moumni, J. Khalloufi
Format: Article
Language:English
Published: Elsevier 2021-02-01
Series:Nuclear Physics B
Online Access:http://www.sciencedirect.com/science/article/pii/S055032132100002X
id doaj-d00115abcf544375ae6e7a69e3011b7b
record_format Article
spelling doaj-d00115abcf544375ae6e7a69e3011b7b2021-01-26T04:11:59ZengElsevierNuclear Physics B0550-32132021-02-01963115305On Einstein-non linear-Maxwell-Yukawa de-Sitter black hole thermodynamicsM. Chabab0H. El Moumni1J. Khalloufi2High Energy and Astrophysics Laboratory, Faculty of Science Semlalia, Cadi Ayyad University, P.O.B. 2390 Marrakech, Morocco; Corresponding author.EPTHE, Physics Department, Faculty of Sciences, Ibn Zohr University, Agadir, MoroccoHigh Energy and Astrophysics Laboratory, Faculty of Science Semlalia, Cadi Ayyad University, P.O.B. 2390 Marrakech, MoroccoWe investigate the thermodynamics of the Einstein-non linear-Maxwell-Yukawa black hole solution in de Sitter spacetime. After presenting the black hole solution and its horizons, we use different thermodynamical points of view to probe the phase structure of such a black hole, ranging from local, global thermodynamics to effective thermodynamical formalism with two horizons. Our analysis showed that the black hole can undergo a thermal phase transition between an unstable phase and stable phase. These results are consolidated by our proposal of generalizing effective thermodynamics to three horizons. As a remarkable byproduct, we find that the effective temperatures behave as an association of ohmic resistances in an electric circuit, which may reveal a possible analogy between the electric and thermodynamic systems.http://www.sciencedirect.com/science/article/pii/S055032132100002X
collection DOAJ
language English
format Article
sources DOAJ
author M. Chabab
H. El Moumni
J. Khalloufi
spellingShingle M. Chabab
H. El Moumni
J. Khalloufi
On Einstein-non linear-Maxwell-Yukawa de-Sitter black hole thermodynamics
Nuclear Physics B
author_facet M. Chabab
H. El Moumni
J. Khalloufi
author_sort M. Chabab
title On Einstein-non linear-Maxwell-Yukawa de-Sitter black hole thermodynamics
title_short On Einstein-non linear-Maxwell-Yukawa de-Sitter black hole thermodynamics
title_full On Einstein-non linear-Maxwell-Yukawa de-Sitter black hole thermodynamics
title_fullStr On Einstein-non linear-Maxwell-Yukawa de-Sitter black hole thermodynamics
title_full_unstemmed On Einstein-non linear-Maxwell-Yukawa de-Sitter black hole thermodynamics
title_sort on einstein-non linear-maxwell-yukawa de-sitter black hole thermodynamics
publisher Elsevier
series Nuclear Physics B
issn 0550-3213
publishDate 2021-02-01
description We investigate the thermodynamics of the Einstein-non linear-Maxwell-Yukawa black hole solution in de Sitter spacetime. After presenting the black hole solution and its horizons, we use different thermodynamical points of view to probe the phase structure of such a black hole, ranging from local, global thermodynamics to effective thermodynamical formalism with two horizons. Our analysis showed that the black hole can undergo a thermal phase transition between an unstable phase and stable phase. These results are consolidated by our proposal of generalizing effective thermodynamics to three horizons. As a remarkable byproduct, we find that the effective temperatures behave as an association of ohmic resistances in an electric circuit, which may reveal a possible analogy between the electric and thermodynamic systems.
url http://www.sciencedirect.com/science/article/pii/S055032132100002X
work_keys_str_mv AT mchabab oneinsteinnonlinearmaxwellyukawadesitterblackholethermodynamics
AT helmoumni oneinsteinnonlinearmaxwellyukawadesitterblackholethermodynamics
AT jkhalloufi oneinsteinnonlinearmaxwellyukawadesitterblackholethermodynamics
_version_ 1724323509461581824