Extended Phase Space Thermodynamics for Black Holes in a Cavity
Abstract
In this paper, we extend the phase space of black holes enclosed by a spherical cavity of radius to include as a thermodynamic volume. The thermodynamic behavior of Schwarzschild and Reissner-Nordstrom (RN) black holes is then investigated in the extended phase space. In a canonical ensemble at constant pressure, we find that the aforementioned thermodynamic behavior is remarkably similar to that of the anti-de Sitter (AdS) counterparts with the cosmological constant being interpreted as a pressure. Specifically, a first-order Hawking-Page-like phase transition occurs for a Schwarzschild black hole in a cavity. The phase structure of a RN black hole in a cavity shows a strong resemblance to that of the van der Waals fluid. Our results may provide a new perspective for the extended thermodynamics of AdS black holes by analogy with black holes in a cavity.
Keywords
Cite
@article{arxiv.2006.14349,
title = {Extended Phase Space Thermodynamics for Black Holes in a Cavity},
author = {Peng Wang and Houwen Wu and Haitang Yang and Feiyu Yao},
journal= {arXiv preprint arXiv:2006.14349},
year = {2020}
}
Comments
v1: 20 pages, 9 figures; v2: 21 pages, 9 figures, references added