Nonlinearly charged dyonic black holes

In this paper, we investigate the thermodynamics of dyonic black holes in the presence of Born-Infeld electromagnetic field. We show that electric-magnetic duality reported for dyonic solutions with Maxwell field is omitted in case of Born-Infeld generalization. We also confirm that generalization t...

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Main Author: Shahram Panahiyan
Format: Article
Language:English
Published: Elsevier 2020-01-01
Series:Nuclear Physics B
Online Access:http://www.sciencedirect.com/science/article/pii/S0550321319303177
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spelling doaj-cbe6e127a80b4ce0b360a9ee113e4ecd2020-11-25T01:31:36ZengElsevierNuclear Physics B0550-32132020-01-01950Nonlinearly charged dyonic black holesShahram Panahiyan0Helmholtz-Institut Jena, Fröbelstieg 3, D-07743 Jena, Germany; GSI Helmholtzzentrum für Schwerionenforschung, D-64291 Darmstadt, Germany; Theoretisch-Physikalisches Institut, Friedrich-Schiller-University Jena, D-07743 Jena, Germany; Correspondence to: Helmholtz-Institut Jena, Fröbelstieg 3, D-07743 Jena, Germany.In this paper, we investigate the thermodynamics of dyonic black holes in the presence of Born-Infeld electromagnetic field. We show that electric-magnetic duality reported for dyonic solutions with Maxwell field is omitted in case of Born-Infeld generalization. We also confirm that generalization to nonlinear field provides the possibility of canceling the effects of cosmological constant. This is done for nonlinearity parameter with 10−33 eV2 order of magnitude which is high nonlinearity regime. In addition, we show that for small electric/magnetic charge and high nonlinearity regime, black holes would develop critical behavior and several phases. In contrast, for highly charged case and Maxwell limits (small nonlinearity), black holes have one thermal stable phase. We also find that the pressure of the cold black holes is bounded by some constraints on its volume while hot black holes' pressure has physical behavior for any volume. In addition, we report on possibility of existences of triple point and reentrant of phase transition in thermodynamics of these black holes. Finally, we show that if electric and magnetic charges are identical, the behavior of our solutions would be Maxwell like (independent of nonlinear parameter and field). In other words, nonlinearity of electromagnetic field becomes evident only when these black holes are charged magnetically and electrically different.http://www.sciencedirect.com/science/article/pii/S0550321319303177
collection DOAJ
language English
format Article
sources DOAJ
author Shahram Panahiyan
spellingShingle Shahram Panahiyan
Nonlinearly charged dyonic black holes
Nuclear Physics B
author_facet Shahram Panahiyan
author_sort Shahram Panahiyan
title Nonlinearly charged dyonic black holes
title_short Nonlinearly charged dyonic black holes
title_full Nonlinearly charged dyonic black holes
title_fullStr Nonlinearly charged dyonic black holes
title_full_unstemmed Nonlinearly charged dyonic black holes
title_sort nonlinearly charged dyonic black holes
publisher Elsevier
series Nuclear Physics B
issn 0550-3213
publishDate 2020-01-01
description In this paper, we investigate the thermodynamics of dyonic black holes in the presence of Born-Infeld electromagnetic field. We show that electric-magnetic duality reported for dyonic solutions with Maxwell field is omitted in case of Born-Infeld generalization. We also confirm that generalization to nonlinear field provides the possibility of canceling the effects of cosmological constant. This is done for nonlinearity parameter with 10−33 eV2 order of magnitude which is high nonlinearity regime. In addition, we show that for small electric/magnetic charge and high nonlinearity regime, black holes would develop critical behavior and several phases. In contrast, for highly charged case and Maxwell limits (small nonlinearity), black holes have one thermal stable phase. We also find that the pressure of the cold black holes is bounded by some constraints on its volume while hot black holes' pressure has physical behavior for any volume. In addition, we report on possibility of existences of triple point and reentrant of phase transition in thermodynamics of these black holes. Finally, we show that if electric and magnetic charges are identical, the behavior of our solutions would be Maxwell like (independent of nonlinear parameter and field). In other words, nonlinearity of electromagnetic field becomes evident only when these black holes are charged magnetically and electrically different.
url http://www.sciencedirect.com/science/article/pii/S0550321319303177
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