Euclidean and Hamiltonian thermodynamics for regular black holes
arXiv:2309.09439 · doi:10.1103/PhysRevD.109.044029
Abstract
We investigate the thermodynamic properties of the Hayward regular black hole using both Euclidean path integral and Hamiltonian methods, in asymptotically anti-de Sitter, Minkowski, and de Sitter spacetimes. With the inclusion of matter fields which act as a source for the regular black hole geometry, an effective temperature emerges that differs from the conventional definition related to the Killing surface gravity. We posit that this temperature is the appropriate choice for studying thermodynamic phenomena, by demonstrating consistency between the Euclidean and Hamiltonian formulations in the appropriate limits. We examine the thermodynamic properties and phase structure of the Hayward black hole in the canonical ensemble and show that, counter to some earlier indications, standard mean-field theory critical behavior is observed when the cosmological constant is treated as a thermodynamic pressure. We note the absence of a Hawking-Page transition, and conjecture that quantum gravity corrections which are suitably strong to regulate the Schwarzschild singularity generically prevent the transition from occurring. We also show that the Smarr relation remains linear in all cases, despite the absence of a linearity proof for nonlinear electrodynamic theories with nonsymmetry inheriting fields.
19 pages, 10 figures, Published version. Comments welcome!
References in corpus (15)
- Minkowski-space correlators in AdS/CFT correspondence: recipe and applications
- Construction of Regular Black Holes in General Relativity
- Notes on non-singular models of black holes
- Are non-Fermi-liquids stable to Cooper pairing?
- Higher-dimensional black holes with a conformally invariant Maxwell source
- Regular black holes: A short topic review
- Mechanical First Law of Black Hole Spacetimes with Cosmological Constant and Its Application to Schwarzschild-de Sitter Spacetime
- Comment on "Construction of regular black holes in general relativity"
- Magnetic Monopole Search at high altitude with the SLIM experiment
- Critical Phenomena of Born-Infeld-de Sitter Black Holes in Cavities
- Generalizations of the Smarr formula for black holes with nonlinear electromagnetic fields
- Classical mass inflation vs semiclassical inner horizon inflation
- Particle creation from the quantum stress tensor
- Shadow thermodynamics of the Hayward-AdS black hole
- No logarithmic corrections to entropy in shift-symmetric Gauss-Bonnet gravity
Cited by in corpus (10)
- Thermodynamics and Null Geodesics of a Schwarzschild Black Hole Surrounded by a Dehnen Type Dark Matter Halo
- Light rings and causality for nonsingular ultracompact objects sourced by nonlinear electrodynamics
- Thermodynamics, Weak Gravitational Lensing, and Parameter Estimation of a Schwarzschild Black Hole Immersed in Hernquist Dark Matter Halo
- Thermodynamics of Regular Black Holes in Anti-de Sitter Space
- Frolov Black Hole Surrounded by Quintessence -- I: Thermodynamics, Geodesics and Shadows
- Exploring the Effects of Generalized Entropy onto Bardeen Black Hole Surrounded by Cloud of Strings
- Euclidean Thermodynamics and Lyapunov Exponents of Einstein-Power-Yang-Mills AdS Black Holes
- Regular black holes and reductions of thermodynamic phase spaces
- Thermodynamic and observational implications of black holes in toroidal geometry
- Thermodynamics and optical aspects of ModMax black holes in higher order curvature gravity with quintessence dark energy