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June 13, 2026International Journal of Modern Physics A0 citations

GEUP effects on the thermodynamic properties of the Kerr-Newman black hole surrounded by quintessence

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AMAheibam Boycha MeiteiYSYenshembam Priyobarta SinghTST. Ibungochouba Singh

Key Points

  • This research aims to assess how the Generalized Extended Uncertainty Principle affects the thermodynamic properties of Kerr-Newman black holes surrounded by quintessence.
  • Conducted a comparative analysis of thermodynamic quantities using Generalized Uncertainty Principle and Extended Uncertainty Principle.
  • Examined the relationship between thermodynamic properties and the influence of quintessence in varying cosmic eras.
  • Studied key attributes such as Hawking temperature, heat capacity, Gibbs free energy, entropy, and pressure.
  • Identified variations in thermodynamic quantities as they transition from the early universe to the later universe under quintessence.
  • Found changes in remnant mass and stability of the Kerr-Newman black hole influenced by dark energy dynamics.

Abstract

In this paper, we investigate the effects of the Generalized Extended Uncertainty Principle (GEUP) on the thermodynamic quantities of the Kerr-Newman black hole surrounded by quintessence (KNBHQ). Additionally, we conduct a comparative analysis of the outcomes derived from the Generalized Uncertainty Principle (GUP) and the Extended Uncertainty Principle (EUP). The GUP is crucial in the context of the early universe, whereas the EUP is significant in the framework of the later universe. This analysis illustrates the variations in thermodynamic quantities, including Hawking temperature, heat capacity, Gibbs free energy, entropy and pressure of the Kerr-Newman black hole, as they evolve from the early universe to the latter universe under the influence of the dark energy model known as quintessence. The remnant mass, temperature and the stability of the KNBHQ are also studied.

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Cite This Study

Meitei et al. (2026) studied this question.

synapsesocial.com/papers/6a2cf5aefaef96ed7f057aa2https://doi.org/10.1142/s0217751x26501319
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