Stress-Energy Tensor for the Massless Spin 1/2 Field in Static Black Hole Spacetimes
Abstract
The stress-energy tensor for the massless spin 1/2 field is numerically computed outside and on the event horizons of both charged and uncharged static non-rotating black holes, corresponding to the Schwarzschild, Reissner-Nordstrom and extreme Reissner-Nordstr\"om solutions of Einstein's equations. The field is assumed to be in a thermal state at the black hole temperature. Comparison is made between the numerical results and previous analytic approximations for the stress-energy tensor in these spacetimes. For the Schwarzschild (charge zero) solution, it is shown that the stress-energy differs even in sign from the analytic approximation. For the Reissner-Nordstrom and extreme Reissner-Nordstrom solutions, divergences predicted by the analytic approximations are shown not to exist.
Cite
@article{arxiv.gr-qc/0305045,
title = {Stress-Energy Tensor for the Massless Spin 1/2 Field in Static Black Hole Spacetimes},
author = {Eric D. Carlson and William H. Hirsch and Benedikt Obermayer and Paul R. Anderson and Peter B. Groves},
journal= {arXiv preprint arXiv:gr-qc/0305045},
year = {2009}
}
Comments
5 pages, 4 figures, additional discussion