Thermodynamics of Black Holes with Rényi Entropy from Classical Gravity

Fuente: arXiv
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Main Authors: Nakarachinda, Ratchaphat, Promsiri, Chatchai, Tannukij, Lunchakorn, Wongjun, Pitayuth
Format: Preprint
Published: 2022
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_version_ 1866916565137489920
author Nakarachinda, Ratchaphat
Promsiri, Chatchai
Tannukij, Lunchakorn
Wongjun, Pitayuth
author_facet Nakarachinda, Ratchaphat
Promsiri, Chatchai
Tannukij, Lunchakorn
Wongjun, Pitayuth
contents The nonextensive nature of black holes is one of the most intriguing discoveries. In fact, the black hole entropy is a nonextensive quantity that scales by its surface area at the event horizon. In our work, we extend the thermodynamic phase space of black holes by treating the nonextensive parameter of the Rényi entropy as the thermodynamic variable. Using Euler's theorem for a homogeneous function of the black holes' mass, the compatible Smarr formula and the first law of black hole thermodynamics can be obtained. It is also demonstrated that, by keeping the same form of the black hole mass, the Rényi temperature is straightforwardly defined as proposed in the literature. Since many different types of black holes can indeed be successfully treated with such a procedure, our consideration is fairly general. It is worthwhile to argue that the black hole thermodynamics in Rényi statistics is rooted from the relation among geometric quantities in the same way as the standard approach corresponding to the Gibbs-Boltzmann statistics. Even though our results are based on classical gravity, they may pave the way to derive the Rényi temperature using the notion of quantum field in curved spacetime.
format Preprint
id arxiv_https___arxiv_org_abs_2211_05989
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Thermodynamics of Black Holes with Rényi Entropy from Classical Gravity
Nakarachinda, Ratchaphat
Promsiri, Chatchai
Tannukij, Lunchakorn
Wongjun, Pitayuth
General Relativity and Quantum Cosmology
The nonextensive nature of black holes is one of the most intriguing discoveries. In fact, the black hole entropy is a nonextensive quantity that scales by its surface area at the event horizon. In our work, we extend the thermodynamic phase space of black holes by treating the nonextensive parameter of the Rényi entropy as the thermodynamic variable. Using Euler's theorem for a homogeneous function of the black holes' mass, the compatible Smarr formula and the first law of black hole thermodynamics can be obtained. It is also demonstrated that, by keeping the same form of the black hole mass, the Rényi temperature is straightforwardly defined as proposed in the literature. Since many different types of black holes can indeed be successfully treated with such a procedure, our consideration is fairly general. It is worthwhile to argue that the black hole thermodynamics in Rényi statistics is rooted from the relation among geometric quantities in the same way as the standard approach corresponding to the Gibbs-Boltzmann statistics. Even though our results are based on classical gravity, they may pave the way to derive the Rényi temperature using the notion of quantum field in curved spacetime.
title Thermodynamics of Black Holes with Rényi Entropy from Classical Gravity
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2211.05989