A model of radiating black hole in noncommutative geometry
高能物理 - 理论
2011-02-22 v1
摘要
The phenomenology of a radiating Schwarzschild black hole is analyzed in a noncommutative spacetime. It is shown that noncommutativity does not depend on the intensity of the curvature. Thus we legitimately introduce noncommutativity in the weak field limit by a coordinate coherent state approach. The new interesting results are the following: i) the existence of a minimal non-zero mass to which black hole can shrink; ii) a finite maximum temperature that the black hole can reach before cooling down to absolute zero; iii) the absence of any curvature singularity. The proposed scenario offers a possible solution to conventional difficulties when describing terminal phase of black hole evaporation.
引用
@article{arxiv.hep-th/0507266,
title = {A model of radiating black hole in noncommutative geometry},
author = {Piero Nicolini},
journal= {arXiv preprint arXiv:hep-th/0507266},
year = {2011}
}
备注
10 pages, 4 figures