Gravitational entropy: Beyond the black hole
- 15 September 1986
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review D
- Vol. 34 (6) , 1700-1707
- https://doi.org/10.1103/physrevd.34.1700
Abstract
We attempt to establish the existence of gravitational entropy for a thin spherical shell of matter as a function of radius by examining the modifications to the thermodynamics of a black hole at the center of such a shell. We show that the shell has the effect of depressing the temperature of the hole, but that small exchanges of energy between the hole and its environment at the same temperature remain isentropic in the presence of the shell. The model is generalized to include de Sitter horizons too, and we find that the shell can be positioned so that a ‘‘back flow’’ of radiation takes place from the de Sitter horizon into the hole, thus enabling the hole-plus-shell system to be used as a device for ‘‘mining the Universe.’’ In all cases our results are consistent with simple arguments indicating that there is no gravitational entropy associated with spherical shells which have not collapsed into black holes.Keywords
This publication has 9 references indexed in Scilit:
- The gravitational arrow of timePhysics Letters A, 1985
- General RelativityPublished by University of Chicago Press ,1984
- Acceleration radiation and the generalized second law of thermodynamicsPhysical Review D, 1982
- Cosmological event horizons, thermodynamics, and particle creationPhysical Review D, 1977
- Trace anomalies and the Hawking effectPhysical Review D, 1977
- Particle creation by black holesCommunications in Mathematical Physics, 1975
- Generalized second law of thermodynamics in black-hole physicsPhysical Review D, 1974
- The four laws of black hole mechanicsCommunications in Mathematical Physics, 1973
- Black Holes and EntropyPhysical Review D, 1973