Physics – High Energy Physics – High Energy Physics - Theory
Scientific paper
1993-07-06
Ann.Phys.242:265-274,1995
Physics
High Energy Physics
High Energy Physics - Theory
16 pages, REVTEX
Scientific paper
10.1006/aphy.1995.1080
We consider modifications to general relativity by the non-local (classical and quantum) string effects for the case of a D-dimensional Scwarzschild black hole. The classical non-local effects do not alter the spacetime topology (the horizon remains unshifted, at least perturbatively). We suggest a simple analytic continuation of the perturbative result into the non-perturbative domain, which eliminates the black hole singularity at the origin and yields an ultraviolet-finite theory of quantum gravity. We investigate the quantum non- local effects (including massive modes) and argue that the inclusion of these back reactions resolves the problem of the thermal spectrum in the semi- classical approach of field quantization in a black hole background, through the bootstrap condition. The density of states for both the quantum and thermal interpretation of the WKB formula are finally shown to differ quant- itatively when including the non-local effects.
Harms Benjamin
Leblanc Yolanda
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