High-order QED correction impacts on phase transition of the Euler-Heisenberg AdS black hole
arXiv:2111.10812 · doi:10.1103/PhysRevD.106.064011
Abstract
Two-phase transition branches of the Euler-Heisenberg (EH) anti-de Sitter (AdS) black hole (BH) were derived from its phase transition critical behavior by Magos et al. [Phys. Rev. D. 102, 084011 (2020)]. We found that the phase transition is unstable. Considering the high-order quantum electrodynamics (QED) correction, we re-derive the EHAdS BH solution and investigate its critical thermodynamic quantities. It is found that the corrected EHAdS BH has only one stable phase transition branch, and its critical exponents are equivalent to that of the vdW system. From the microscopic point of view, we also derive its normalized scalar curvature based on the Ruppeiner geometry. Different from two concave surfaces of the scalar curvature without considering the high-order QED correction, we show that the corrected Ruppeiner geometry has only one concave surface. Our results indicate that the phase transition instability derived by Magos is due to without considering the high-order QED correction.
10 pages, 11 figures
References in corpus (4)
Cited by in corpus (11)
- Thermodynamic topology of 4D Euler-Heisenberg-AdS black hole in different ensembles
- Euler-Heisenberg black hole surrounded by perfect fluid dark matter
- Thermodynamics of AdS-Schwarzschild-like black hole in loop quantum gravity
- Angular momentum and chaos bound of charged particles around Einstein-Euler-Heisenberg AdS black holes
- Euler-Heisenberg black hole surrounded by quintessence in the background of perfect fluid dark matter: Thermodynamics, Shadows and Quasinormal modes
- Thermodynamics of Schwarzschild-AdS black hole in non-commutative geometry
- Thermodynamics and Microstructures of Euler-Heisenberg Black Hole in a Cavity
- Thermodynamics of high order correction for Schwarzschild-AdS black hole in non-commutative geometry
- Thermodynamic phase transition and Joule-Thomson expansion of a quantum corrected black hole in AdS spacetime
- Gravitational Lensing of Euler-Heisenberg Black Hole Surrounded by Perfect Fluid Dark Matter
- Black holes in gravity coupled with Euler-Heisenberg electrodynamics