The self-screening Hawking atmosphere
Abstract
A model is proposed in which the Hawking particles emitted by a black hole are treated as an envelope of matter that obeys an equation of state, and acts as a source in Einstein's equations. This is a crude but interesting way to accommodate for the back reaction. For large black holes, the solution can be given analytically, if the equation of state is , with . The solution exhibits a singularity at the origin. If we assume free particle types, we can use a Hartree-Fock procedure to compute the contribution of one such field to the entropy, and the result scales as expected as . A slight mismatch is found that could be attributed to quantum corrections to Einstein's equations, but can also be made to disappear when is set equal to one. The case is further analysed.
Cite
@article{arxiv.gr-qc/9706058,
title = {The self-screening Hawking atmosphere},
author = {G. 't Hooft},
journal= {arXiv preprint arXiv:gr-qc/9706058},
year = {2009}
}
Comments
19 pages, plain TeX, 5 figures PostScript. The author was made aware of further references to older work, in view of which modifications were made in order to avoid too much overlap. A discussion is added on the case $\kappa=1$