Universality on thermodynamic relation with corrections in Einstein-Bel-Robinson gravity Black hole

Fuente: arXiv
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Main Authors: Zhen, Hai-Long, Li, Huai-Fan, Ma, Yu-Bo
Format: Preprint
Published: 2025
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author Zhen, Hai-Long
Li, Huai-Fan
Ma, Yu-Bo
author_facet Zhen, Hai-Long
Li, Huai-Fan
Ma, Yu-Bo
contents The generalized thermodynamic extremum relation, as proposed by Goon and Penco, establishes a novel theoretical framework for the study of spacetime thermodynamics. However, extant investigations generally assume that the black hole state parameter is solely a first-order function of the perturbation parameter when exploring the Goon-Penco relation in diverse spacetime contexts. An analytic expression for the perturbation parameter as a function of the black hole entropy can be expressed by treating the black hole mass as constant. The present study addresses this limitation and provides insight into the universal Goon-Penco relation when multiple thermodynamic state parameters behave as higher order functions of the perturbation parameters. Notably, we have not only established a universal relational formula in the case of multiple state variables, but more importantly, we have put forward an innovative conjecture that reveals the existence of a universal relation between displaced thermodynamic quantities in spacetime in the context of an arbitrary black hole. These theoretical breakthroughs are expected to open up new exploration directions for quantum gravity research.
format Preprint
id arxiv_https___arxiv_org_abs_2506_08466
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Universality on thermodynamic relation with corrections in Einstein-Bel-Robinson gravity Black hole
Zhen, Hai-Long
Li, Huai-Fan
Ma, Yu-Bo
General Relativity and Quantum Cosmology
High Energy Physics - Theory
The generalized thermodynamic extremum relation, as proposed by Goon and Penco, establishes a novel theoretical framework for the study of spacetime thermodynamics. However, extant investigations generally assume that the black hole state parameter is solely a first-order function of the perturbation parameter when exploring the Goon-Penco relation in diverse spacetime contexts. An analytic expression for the perturbation parameter as a function of the black hole entropy can be expressed by treating the black hole mass as constant. The present study addresses this limitation and provides insight into the universal Goon-Penco relation when multiple thermodynamic state parameters behave as higher order functions of the perturbation parameters. Notably, we have not only established a universal relational formula in the case of multiple state variables, but more importantly, we have put forward an innovative conjecture that reveals the existence of a universal relation between displaced thermodynamic quantities in spacetime in the context of an arbitrary black hole. These theoretical breakthroughs are expected to open up new exploration directions for quantum gravity research.
title Universality on thermodynamic relation with corrections in Einstein-Bel-Robinson gravity Black hole
topic General Relativity and Quantum Cosmology
High Energy Physics - Theory
url https://arxiv.org/abs/2506.08466