Equivalence Principle and Field Quantization in Curved Spacetime
Quantum Physics
2009-11-02 v3
Abstract
To comply with the equivalence principle, fields in curved spacetime can be quantized only in the neighborhood of each point, where one can construct a freely falling M i n k o w s k i frame with z e r o curvature. In each such frame, the geometric forces of gravity can be replaced by a selfinteracting spin-2 field, as proposed by Feynman in 1962. At a n y fixed distance from a black hole, the vacuum in each freely falling volume element acts like a thermal bath of all particles with Unruh temperature T_U=\hbar GM/2\pi c R^2. At the horizon R=2GM/c^2, the falling vacua show the Hawking temperature T_H=\hbar c^3/8\pi GMk_B.
Cite
@article{arxiv.0910.4034,
title = {Equivalence Principle and Field Quantization in Curved Spacetime},
author = {H. Kleinert},
journal= {arXiv preprint arXiv:0910.4034},
year = {2009}
}
Comments
2 pages, extended and corrected