Thermodynamics of Schwarzschild-AdS black hole in non-commutative geometry

Fuente: arXiv
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Main Authors: Wang, Rui-Bo, Ma, Shi-Jie, You, Lei, Deng, Jian-Bo, Hu, Xian-Ru
Format: Preprint
Published: 2024
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_version_ 1866910908666609664
author Wang, Rui-Bo
Ma, Shi-Jie
You, Lei
Deng, Jian-Bo
Hu, Xian-Ru
author_facet Wang, Rui-Bo
Ma, Shi-Jie
You, Lei
Deng, Jian-Bo
Hu, Xian-Ru
contents In this paper, we study the thermodynamics of Schwarzschild-anti-de Sitter black holes within the framework of non-commutative geometry. By solving the Einstein's equations, we derive the corrected Schwarzschild-AdS black hole with Lorentzian distribution and analyze the thermodynamics. Our results confirm that if the energy-momentum tensor outside the event horizon is related to the mass of the black hole, the conventional first law of thermodynamics will be violated. The study of criticality reveals that the black hole undergoes a small black hole-large black hole phase transition similar to that of the Van der Waals system, with a critical point and a critical ratio slightly smaller than that of the Van der Waals fluid. As the non-commutative parameter increases, the phase transition process shortens, leading to a critical point, and ultimately to the disappearance of the phase transition. The violation of the conventional first law results in a discontinuity of the Gibbs free energy during the phase transition, indicating the occurrence of zeroth-order phase transition. Moreover, we investigate the Joule-Thomson expansion, obtaining the minimum inversion temperature and the minimum inversion mass.
format Preprint
id arxiv_https___arxiv_org_abs_2410_03650
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Thermodynamics of Schwarzschild-AdS black hole in non-commutative geometry
Wang, Rui-Bo
Ma, Shi-Jie
You, Lei
Deng, Jian-Bo
Hu, Xian-Ru
General Relativity and Quantum Cosmology
In this paper, we study the thermodynamics of Schwarzschild-anti-de Sitter black holes within the framework of non-commutative geometry. By solving the Einstein's equations, we derive the corrected Schwarzschild-AdS black hole with Lorentzian distribution and analyze the thermodynamics. Our results confirm that if the energy-momentum tensor outside the event horizon is related to the mass of the black hole, the conventional first law of thermodynamics will be violated. The study of criticality reveals that the black hole undergoes a small black hole-large black hole phase transition similar to that of the Van der Waals system, with a critical point and a critical ratio slightly smaller than that of the Van der Waals fluid. As the non-commutative parameter increases, the phase transition process shortens, leading to a critical point, and ultimately to the disappearance of the phase transition. The violation of the conventional first law results in a discontinuity of the Gibbs free energy during the phase transition, indicating the occurrence of zeroth-order phase transition. Moreover, we investigate the Joule-Thomson expansion, obtaining the minimum inversion temperature and the minimum inversion mass.
title Thermodynamics of Schwarzschild-AdS black hole in non-commutative geometry
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2410.03650