How red is a quantum black hole?
General Relativity and Quantum Cosmology
2015-06-25 v1 High Energy Physics - Theory
Abstract
Radiating black holes pose a number of puzzles for semiclassical and quantum gravity. These include the transplanckian problem -- the nearly infinite energies of Hawking particles created near the horizon, and the final state of evaporation. A definitive resolution of these questions likely requires robust inputs from quantum gravity. We argue that one such input is a quantum bound on curvature. We show how this leads to an upper limit on the redshift of a Hawking emitted particle, to a maximum temperature for a black hole, and to the prediction of a Planck scale remnant.
Cite
@article{arxiv.gr-qc/0505153,
title = {How red is a quantum black hole?},
author = {Viqar Husain and Oliver Winkler},
journal= {arXiv preprint arXiv:gr-qc/0505153},
year = {2015}
}
Comments
3 pages, essay for the Gravity Research Foundation