Interpreting the semi-classical stress-energy tensor in a Schwarzschild background, implications for the information paradox
Abstract
Numerical results for the semi-classical stress-energy tensor outside the horizon of a Schwarzschild black hole obtained in the 1980's and 1990's are re- examined in order to better understand the origin of Hawking radiation and the implications for the black hole information paradox. Polynomial fits to the numerical results for the 4D transverse stress are obtained for conformally-coupled spin 0 and spin 1 fields in the Hartle-Hawking and Unruh states and. Analysis of the spin 0 Unruh state results clearly shows that the origin of the Hawking radiation is not pair creation or tunneling very close to the black hole horizon, but rather is a nonlocal process extending beyond r = 3M . Arguments are presented that the black hole information paradox cannot plausibly be addressed by processes occurring on or very close to the horizon of a large black hole whose geometry is close to Schwarzschild.
Keywords
Cite
@article{arxiv.1808.08638,
title = {Interpreting the semi-classical stress-energy tensor in a Schwarzschild background, implications for the information paradox},
author = {James M. Bardeen},
journal= {arXiv preprint arXiv:1808.08638},
year = {2018}
}
Comments
27 pages, 5 figures. There is considerable overlap with arXiv:1706.09204, but the analysis is based on more accurate data, and there are substantial additions and deletions