Leading-order corrections to the thermodynamics of Rindler modified Schwarzschild black hole

Fuente: arXiv
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Main Authors: Mandal, Surajit, Das, Surajit, Gogoi, Dhruba Jyoti, Pramanik, Ananda
Format: Preprint
Published: 2023
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author Mandal, Surajit
Das, Surajit
Gogoi, Dhruba Jyoti
Pramanik, Ananda
author_facet Mandal, Surajit
Das, Surajit
Gogoi, Dhruba Jyoti
Pramanik, Ananda
contents In this work, we present a thermodynamical study of a Rindler modified Schwarzschild black hole under the consideration of small thermal fluctuations. In particular, we compute various stable macroscopic thermodynamic variables such as Hawking temperature, entropy, Helmholtz free energy, internal energy, enthalpy, and Gibbs free energy. To explore the effects of small statistical thermal fluctuations on stable thermodynamical parameters, we estimated the corrections to the various thermodynamical potentials of Rindler modified Schwarzschild black hole up to the first (leading) order and do a comparative study for the different values of correction parameter and Rindler acceleration parameter for fixed values of a cosmological constant. In this study, we examine the stability of black holes in the presence of thermal fluctuations. We find that when the correction parameter is positive, small-sized black holes remain stable, while large-sized ones become unstable. Conversely, when the correction parameter is negative, both small and large black holes exhibit instability. Additionally, we demonstrate that the first law of thermodynamics remains valid even in the presence of thermal fluctuations.
format Preprint
id arxiv_https___arxiv_org_abs_2308_05712
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Leading-order corrections to the thermodynamics of Rindler modified Schwarzschild black hole
Mandal, Surajit
Das, Surajit
Gogoi, Dhruba Jyoti
Pramanik, Ananda
General Relativity and Quantum Cosmology
High Energy Physics - Theory
In this work, we present a thermodynamical study of a Rindler modified Schwarzschild black hole under the consideration of small thermal fluctuations. In particular, we compute various stable macroscopic thermodynamic variables such as Hawking temperature, entropy, Helmholtz free energy, internal energy, enthalpy, and Gibbs free energy. To explore the effects of small statistical thermal fluctuations on stable thermodynamical parameters, we estimated the corrections to the various thermodynamical potentials of Rindler modified Schwarzschild black hole up to the first (leading) order and do a comparative study for the different values of correction parameter and Rindler acceleration parameter for fixed values of a cosmological constant. In this study, we examine the stability of black holes in the presence of thermal fluctuations. We find that when the correction parameter is positive, small-sized black holes remain stable, while large-sized ones become unstable. Conversely, when the correction parameter is negative, both small and large black holes exhibit instability. Additionally, we demonstrate that the first law of thermodynamics remains valid even in the presence of thermal fluctuations.
title Leading-order corrections to the thermodynamics of Rindler modified Schwarzschild black hole
topic General Relativity and Quantum Cosmology
High Energy Physics - Theory
url https://arxiv.org/abs/2308.05712