Reentrant phase transition in holographic thermodynamicsof Born–Infeld AdS black hole

Abstract In this paper, we study the phase tranisions in the extended holographic thermodynamics of Born–Infeld AdS black holes. The extended gravitational thermodynamics of black holes is related to the thermodynamics of the dual field theory by varying both cosmological constant and Newton’s const...

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Main Authors: Ning-Chen Bai, Li Song, Jun Tao
Format: Article
Language:English
Published: SpringerOpen 2024-01-01
Series:European Physical Journal C: Particles and Fields
Online Access:https://doi.org/10.1140/epjc/s10052-024-12407-3
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author Ning-Chen Bai
Li Song
Jun Tao
author_facet Ning-Chen Bai
Li Song
Jun Tao
author_sort Ning-Chen Bai
collection DOAJ
description Abstract In this paper, we study the phase tranisions in the extended holographic thermodynamics of Born–Infeld AdS black holes. The extended gravitational thermodynamics of black holes is related to the thermodynamics of the dual field theory by varying both cosmological constant and Newton’s constant. With topological analysis and numerical calculation, we find that the reentrant large-small-large black hole phase transition still exists in $$D=4$$ D = 4 . Interestingly, a similar reentrant phase transition is also observed in the dual field theory, between the high-, low- and high-entropy thermal states. For higher dimension $$D>4$$ D > 4 , only the van der Waals like phase transition is observed, both in the bulk and the dual field theory.
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spelling doaj.art-208b6d223871413bafef5b574ff397d72024-03-31T11:32:20ZengSpringerOpenEuropean Physical Journal C: Particles and Fields1434-60522024-01-0184111810.1140/epjc/s10052-024-12407-3Reentrant phase transition in holographic thermodynamicsof Born–Infeld AdS black holeNing-Chen Bai0Li Song1Jun Tao2College of Physics, Sichuan UniversityCollege of Physics, Sichuan UniversityCollege of Physics, Sichuan UniversityAbstract In this paper, we study the phase tranisions in the extended holographic thermodynamics of Born–Infeld AdS black holes. The extended gravitational thermodynamics of black holes is related to the thermodynamics of the dual field theory by varying both cosmological constant and Newton’s constant. With topological analysis and numerical calculation, we find that the reentrant large-small-large black hole phase transition still exists in $$D=4$$ D = 4 . Interestingly, a similar reentrant phase transition is also observed in the dual field theory, between the high-, low- and high-entropy thermal states. For higher dimension $$D>4$$ D > 4 , only the van der Waals like phase transition is observed, both in the bulk and the dual field theory.https://doi.org/10.1140/epjc/s10052-024-12407-3
spellingShingle Ning-Chen Bai
Li Song
Jun Tao
Reentrant phase transition in holographic thermodynamicsof Born–Infeld AdS black hole
European Physical Journal C: Particles and Fields
title Reentrant phase transition in holographic thermodynamicsof Born–Infeld AdS black hole
title_full Reentrant phase transition in holographic thermodynamicsof Born–Infeld AdS black hole
title_fullStr Reentrant phase transition in holographic thermodynamicsof Born–Infeld AdS black hole
title_full_unstemmed Reentrant phase transition in holographic thermodynamicsof Born–Infeld AdS black hole
title_short Reentrant phase transition in holographic thermodynamicsof Born–Infeld AdS black hole
title_sort reentrant phase transition in holographic thermodynamicsof born infeld ads black hole
url https://doi.org/10.1140/epjc/s10052-024-12407-3
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AT lisong reentrantphasetransitioninholographicthermodynamicsofborninfeldadsblackhole
AT juntao reentrantphasetransitioninholographicthermodynamicsofborninfeldadsblackhole