Quantum geometry and microscopic black hole entropy
摘要
Quantum black holes within the loop quantum gravity (LQG) framework are considered. The number of microscopic states that are consistent with a black hole of a given horizon area are counted and the statistical entropy, as a function of the area, is obtained for up to . The results are consistent with an asymptotic linear relation and a logarithmic correction with a coefficient equal to -1/2. The Barbero-Immirzi parameter that yields the asymptotic linear relation compatible with the Bekenstein-Hawking entropy is shown to coincide with a value close to , which has been previously obtained analytically. However, a new and oscillatory functional form for the entropy is found for small, Planck size, black holes that calls for a physical interpretation.
引用
@article{arxiv.gr-qc/0605014,
title = {Quantum geometry and microscopic black hole entropy},
author = {Alejandro Corichi and Jacobo Diaz-Polo and Enrique Fernandez-Borja},
journal= {arXiv preprint arXiv:gr-qc/0605014},
year = {2008}
}
备注
10 pages, Revtex4 file, 7 new figures. Discussion expanded, same conclusions