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  4. Effective thermodynamical system of Schwarzschild-de Sitter black holes from Rényi statistics
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Effective thermodynamical system of Schwarzschild-de Sitter black holes from Rényi statistics

Author(s)
Nakarachinda, Ratchaphat
Hirunsirisawat, Ekapong
Tannukij, Lunchakorn
Wongjun, Pitayuth
Date Issued
September 15, 2021
Type
Article
DOI
10.1103/PhysRevD.104.064003
Abstract
It has been known that the Schwarzschild-de Sitter (Sch-dS) black hole may not be in thermal equilibrium and also be found to be thermodynamically unstable in the standard black hole thermodynamics. In the present work, we investigate the possibility to realize the thermodynamical stability of the Sch-dS black hole as an effective system by using the Rényi statistics, which includes the nonextensive nature of black holes. Our results indicate that the nonextensivity allows the black hole to be thermodynamically stable, which gives rise to the lower bound on the nonextensive parameter. By comparing the results to ones in the separated system approach, we find that the effective temperature is always smaller than the black hole horizon temperature and the thermodynamically stable black hole in the effective approach is always larger than the one in the separated approach at a certain temperature. There exists only the zeroth-order phase transition from the hot gas phase to the black hole phase for the effective system, while it is possible to have transitions of both zeroth order and first order for the separated system.
Citation
Physical Review D, 104(6), 2021
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