Tunneling of Dirac particles from accelerating and rotating black holes
arXiv:1010.6106 · doi:10.1016/j.physletb.2011.03.051
Abstract
Hawking radiation from black holes has been studied as a phenomenon of quantum tunneling of particles through their horizons. We have extended this approach to study the tunneling of Dirac particles from a large class of black holes which includes those with acceleration and rotation as well. We have calculated the tunneling probability of incoming and outgoing particles, and recovered the correct Hawking temperature by this method.
Corrections done, modifications made, references added; to appear in Phys. Lett. B
References in corpus (12)
- Fermions Tunnelling from Black Holes
- Tunnelling, Temperature and Taub-NUT Black Holes
- Charged Fermions Tunnelling from Kerr-Newman Black Holes
- Temporal contribution to gravitational WKB-like calculations
- Dirac particles tunneling from BTZ black hole
- Subtleties in the quasi-classical calculation of Hawking radiation
- Hawking radiation of Dirac particles via tunneling from Kerr black hole
- Fermions tunnelling from the charged dilatonic black holes
- Black Hole Thermodynamics and the Factor of 2 Problem
- Accelerating Kerr-Newman black holes in (anti-)de Sitter space-time
- Radiation generated by accelerating and rotating charged black holes in (anti-)de Sitter space
- Hawking Radiation of Fermionic Field and Anomaly in 2+1 Dimensional Black Holes