Quantum-Corrected Thermodynamics and Phase Structure of AdS Euler-Heisenberg Black Hole
摘要
We investigate the thermodynamic behaviour of an AdS black hole arising from nonlinear electrodynamics-corrected gravity, incorporating quantum effects through thermal fluctuations. From the Einstein--Euler--Heisenberg framework, we consider the modified black hole solution and analyse its thermodynamic properties in the extended phase space. Logarithmic and inverse-area corrections to the entropy are obtained, leading to modified expressions for enthalpy, internal energy, Helmholtz free energy and Gibbs free energy. The corrected specific heat exhibits multiple divergences and sign changes, signalling genuine second-order phase transitions and revealing a quantum-stabilized microscopic phase followed by universal macroscopic instability. Our results demonstrate that thermal fluctuations qualitatively restructure the thermodynamic phase space and highlight the dominant role of quantum corrections in governing the black hole stability.
引用
@article{arxiv.2608.13378,
title = {Quantum-Corrected Thermodynamics and Phase Structure of AdS Euler-Heisenberg Black Hole},
author = {Siddhartha Sankar Borah and Dhruba Jyoti Gogoi and Kalyan Bhuyan},
journal= {arXiv preprint arXiv:2608.13378},
year = {2026}
}
备注
Accepted for publication at EPJC