4.6 Article

Impacts of Generalized Uncertainty Principle on the Black Hole Thermodynamics and Phase Transition in a Cavity

期刊

FRONTIERS IN PHYSICS
卷 10, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fphy.2022.887410

关键词

generalized uncertainty principle; black hole; phase transition; thermodynamic evolution; remnant

资金

  1. National Natural Science Foundation of China [12105231]
  2. Guiding Local Science and Technology Development Projects by the Central Government of China [2021ZYD0031]
  3. Sichuan Youth Science and Technology Innovation Research Team [21CXTD0038]
  4. Fundamental Research Funds of China West Normal University [20B009]

向作者/读者索取更多资源

This study investigates the thermodynamic evolution and phase transition of a black hole in a finite spherical cavity subject to the generalized uncertainty principle. The results show that the thermodynamic quantities, stability, critical behavior, and phase transition of the black hole are significantly affected by both positive and negative values of the generalized uncertainty principle parameter, beta(0). For beta(0) > 0, the black hole forms a remnant with finite temperature, finite mass, and zero local heat capacity in the last stages of evolution. For beta(0) < 0, the remnant is metastable and would be in the Hawking-Page-type phase transition forever.
In this work, we conduct a study regarding the thermodynamic evolution and the phase transition of a black hole in a finite spherical cavity subject to the generalized uncertainty principle. The results demonstrate that both the positive and negative generalized uncertainty principle parameters beta(0) can significantly affect the thermodynamic quantities, stability, critical behavior, and phase transition of the black hole. For beta(0) > 0, the black hole forms a remnant with finite temperature, finite mass, and zero local heat capacity in the last stages of evolution, which can be regarded as an elementary particle. Meanwhile, it undergoes one second-order phase transition and two Hawking-Page-type phase transitions. The Gross-Perry-Yaffe phase transition occurs for both large black hole configuration and small black hole configuration. For beta(0) < 0, the Gross-Perry-Yaffe phase transition occurs only for large black hole configuration, and the temperature and heat capacity of the black hole remnant is finite, whereas its mass is zero. This indicates the remnant is metastable and would be in the Hawking-Page-type phase transition forever. Specifically, according to the viewpoint of corpuscular gravity, the remnant can be interpreted as an additional metastable tiny black hole configuration, which never appears in the original case and the positive correction case.

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