An Operational Approach To Black Hole Entropy
arXiv:gr-qc/9712085 · doi:10.1103/PhysRevD.57.6311
Abstract
In this paper we calculate the entropy of a thin spherical shell that contracts reversibly from infinity down to its event horizon. We find that, for a broad class of equations of state, the entropy of a non-extremal shell is one-quarter of its area in the black hole limit. The considerations in this paper suggest the following operational definition for the entropy of a black hole: is the equilibrium thermodynamic entropy that would be stored in the material which gathers to form the black hole, if all of this material were compressed into a thin layer near its gravitational radius. Since the entropy for a given mass and area is maximized for thermal equilibrium we expect that this is the maximum entropy that could be stored in the material before it crosses the horizon. In the case of an extremal black hole the shell model does not assign an unambiguous value to the entropy.
15 pages, LaTeX, submitted to Phys. Rev. D
Cited by in corpus (37)
- Black Hole Thermodynamics
- Extremal limits and black hole entropy
- Black holes, brick walls and the Boulware state
- Towards a Non-singular Paradigm of Black Hole Physics
- Action principle for the Fluid-Gravity correspondence and emergent gravity
- Black hole entropy, curved space and monsters
- Ideal Gas in a strong Gravitational field: Area dependence of Entropy
- Gravity and Nonequilibrium Thermodynamics of Classical Matter
- Bounding the Temperatures of Black Holes Dual to Strongly Coupled Field Theories on Flat Spacetime
- Entropy of extremal black holes from entropy of quasiblack holes
- Two Aspects of Black hole entropy in Lanczos-Lovelock models of gravity
- Dirty rotating black holes: regularity conditions on stationary horizons
- Area scaling entropies for gravitating systems
- Thermodynamics of rotating thin shells in the BTZ spacetime
- Entropy of a self-gravitating electrically charged thin shell and the black hole limit
- Comments on entanglement entropy
- Entropy of an extremal electrically charged thin shell and the extremal black hole
- The universality of black hole thermodynamics
- An Entropy-Area Law for Neutron Stars Near the Black Hole Threshold
- Entropy of extremal black holes: horizon limits through charged thin shells, a unified approach
- Unified approach to the entropy of an extremal rotating BTZ black hole: Thin shells and horizon limits
- Compact objects in general relativity: From Buchdahl stars to quasiblack holes
- A Universal Lower Bound on the Specific Temperatures of AdS-Reissner-Nordstrom Black Holes with Flat Event Horizons
- Thermodynamics and entropy of self-gravitating matter shells and black holes in dimensions
- Thermodynamics of extremal rotating thin shells in an extremal BTZ spacetime and the extremal black hole entropy
- Entropy, topology of two-dimensional extreme black holes
- Solution Independent Analysis of Black Hole Entropy in Brick Wall Model
- Thermodynamics for radiating shells in anti-de Sitter space-time
- On the gravitational collapse in anti-de Sitter space-time
- Black Hole Thermodynamics via Tsallis Statistical Mechanics
- Numerical thermodynamic studies of classical gravitational collapse in 3+1 and 4+1 dimensions
- Holographic Weyl Entropy Bounds
- Universality of the thermodynamics of a quantum-mechanically radiating black hole departing from thermality
- Thermodynamics of a collapsing shell in an expanding Universe
- A Conceptual Model for the Origin of the Cutoff Parameter in Exotic Compact Objects
- Classical and Quantum Thermodynamic Systems in Curved Spacetime
- Microscopic Origin of Bekenstein-Hawking Entropy in Gravity: A Thermo Field Dynamics Approach