Topology of black hole thermodynamics
Shao-Wen Wei, Yu-Xiao Liu

TL;DR
This paper introduces a novel topological approach to black hole thermodynamics, classifying critical points by topological charge and revealing differences among black hole types, thus opening new avenues for understanding black hole phase transitions.
Contribution
It is the first study to apply topology to black hole thermodynamics, classifying critical points and linking topological charges to phase transition behaviors.
Findings
Critical points are classified into conventional and novel types.
First-order phase transitions extend from conventional critical points.
Different black hole models have distinct topological charges.
Abstract
A critical point is an important structure in the phase diagram of a thermodynamic system. In this work, we introduce topology to the study of the black hole thermodynamics for the first time by following Duan's topological current -mapping theory. Each critical point is endowed with a topological charge. We find that critical points can be divided into two classes, the conventional and the novel. Further study shows that the first-order phase transition can extend from the conventional critical point, while the presence of the novel critical point cannot serve as an indicator of the presence of the first-order phase transition near it. Moreover, the charged anti-de Sitter black hole and the Born-Infeld anti-de Sitter black hole have different topological charges, which indicates they are in different topological classes from the viewpoint of thermodynamics. These give the first…
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