Hawking radiation and the Stefan-Boltzmann law: The effective radius of the black-hole quantum atmosphere
arXiv:1607.02510 · doi:10.1016/j.physletb.2016.03.071
Abstract
It has recently been suggested [S. B. Giddings, Phys. Lett. B {\bf 754}, 39 (2016)] that the Hawking black-hole radiation spectrum originates from an effective quantum "atmosphere" which extends well outside the black-hole horizon. In particular, comparing the Hawking radiation power of a -dimensional Schwarzschild black hole of horizon radius with the familiar Stefan-Boltzmann radiation power of a -dimensional flat space perfect blackbody emitter, Giddings concluded that the source of the Hawking semi-classical black-hole radiation is a quantum region outside the Schwarzschild black-hole horizon whose effective radius is characterized by the relation . It is of considerable physical interest to test the general validity of Giddings's intriguing conclusion. To this end, we study the Hawking radiation of -dimensional Schwarzschild black holes. We find that the dimensionless radii which characterize the black-hole quantum atmospheres, as determined from the Hawking black-hole radiation power and the -dimensional Stefan-Boltzmann radiation law, are a decreasing function of the number of spacetime dimensions. In particular, it is shown that radiating -dimensional Schwarzschild black holes are characterized by the relation in the large regime. Our results therefore suggest that, at least in some physical cases, the Hawking emission spectrum originates from quantum excitations very near the black-hole horizon.
6 pages
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