Horizon Constraints and Black Hole Entropy
Abstract
To ask a question about a black hole in quantum gravity, one must restrict initial or boundary data to ensure that a black hole is actually present. For two-dimensional dilaton gravity, and probably a much wider class of theories, I show that the imposition of a spacelike ``stretched horizon'' constraint modifies the algebra of symmetries, inducing a central term. Standard conformal field theory techniques then fix the asymptotic density of states, reproducing the Bekenstein-Hawking entropy. The states responsible for black hole entropy can thus be viewed as ``would-be gauge'' states that become physical because the symmetries are altered.
Keywords
Cite
@article{arxiv.hep-th/0408123,
title = {Horizon Constraints and Black Hole Entropy},
author = {S. Carlip},
journal= {arXiv preprint arXiv:hep-th/0408123},
year = {2010}
}
Comments
11 pages, LaTeX, 1 figure; v2: slightly expanded, minor corrections, new appendix on stretched horizon; v3: new comment on cutoff-dependence of central charge, minor rewording