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  • Letter

Universal topological classifications of black hole thermodynamics

Shao-Wen Wei1,2,*, Yu-Xiao Liu1,2,†, and Robert B. Mann3,‡

  • 1Lanzhou Center for Theoretical Physics, Key Laboratory of Theoretical Physics of Gansu Province, and Key Laboratory of Quantum Theory and Applications of MoE, Lanzhou University, Lanzhou, Gansu 730000, People’s Republic of China
  • 2Institute of Theoretical Physics, Research Center of Gravitation, and School of Physical Science and Technology, Lanzhou University, Lanzhou 730000, People’s Republic of China
  • 3Department of Physics and Astronomy, University of Waterloo, Waterloo, Ontario N2L 3G1, Canada

  • *Contact author: weishw@lzu.edu.cn
  • †Contact author: liuyx@lzu.edu.cn
  • ‡Contact author: rbmann@uwaterloo.ca

Phys. Rev. D 110, L081501 – Published 1 October, 2024

DOI: https://doi.org/10.1103/PhysRevD.110.L081501

Abstract

In this Letter, we investigate the universal classifications of black hole states by considering them as topological defects within the thermodynamic parameter space. Through the asymptotic behaviors of the constructed vector, our results indicate the existence of four distinct topological classifications, denoted as W1−, W0+, W0−, and W1+. Within these classifications, the innermost small black hole states are characterized as unstable, stable, unstable, and stable, respectively, while the outermost large ones exhibit an unstable, unstable, stable, and stable behavior. These classifications also display contrasting thermodynamic properties in both low and high Hawking temperature limits. Furthermore, we establish a systematic ordering of the local thermodynamically stable and unstable black hole states as the horizon radius increases for a specific topological classification. These results reveal the universal topological classifications governing black hole thermodynamics, providing valuable insights into the fundamental nature of quantum gravity.

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