Black Hole Evaporation and Compact Extra Dimensions
Abstract
We study the evaporation of black holes in space-times with extra dimensions of size L. We first obtain a description which interpolates between the expected behaviors of very large and very small black holes and then show that the luminosity is greatly damped when the horizon shrinks towards L from a larger value. Analogously, black holes born with an initial size smaller than L are almost stable. This effect is due to the dependence of both the Hawking temperature and the grey-body factor of a black hole on the dimensionality of space. Although the picture of what happens when the horizon becomes of size L is still incomplete, we argue that there occurs a (first order) phase transition, possibly signaled by an outburst of energy which leaves a quasi-stable remnant.
Cite
@article{arxiv.hep-th/0101154,
title = {Black Hole Evaporation and Compact Extra Dimensions},
author = {Roberto Casadio and Benjamin Harms},
journal= {arXiv preprint arXiv:hep-th/0101154},
year = {2008}
}
Comments
RevTeX, 13 pages, 6 figures included