English

Hawking--Page phase transitions of the black holes in a cavity

General Relativity and Quantum Cosmology 2021-09-30 v2

Abstract

The Hawking--Page phase transitions of the Schwarzschild and charged black holes are investigated in an extended phase space, in which the black holes are enclosed in a spherical cavity of radius rBr_B in asymptotically flat space. An effective thermodynamic volume V=4πrB3/3V=4\pi r_B^3/3 is introduced for the black hole, and an effective pressure pp is defined as the conjugate variable of VV. The phase transition temperature THPT_{\rm HP} and the Gibbs free energy GG are systematically studied in a grand canonical ensemble with fixed electric potential Φ\Phi, and THPT_{\rm HP} is found to increase with pp and decrease with Φ\Phi. If the phase transition occurs, Φ\Phi must have an upper bound, such that the cavity radius is always larger than the black hole horizon radius. These phase transition behaviors are further compared to those in the anti-de Sitter space, and the remarkable similarities and notable differences are also discussed in depth. Our work reveals the relationship of the thermodynamic properties of black holes and their specific boundary conditions in different extended phase spaces.

Keywords

Cite

@article{arxiv.2012.13921,
  title  = {Hawking--Page phase transitions of the black holes in a cavity},
  author = {Wen-Bo Zhao and Guo-Rong Liu and Nan Li},
  journal= {arXiv preprint arXiv:2012.13921},
  year   = {2021}
}

Comments

20 pages, 5 figures