Hawking radiation of asymptotically non-flat dyonic black holes in Einstein-Maxwell-dilaton gravity
arXiv:1203.6309 · doi:10.1103/PhysRevD.86.084042
Abstract
In the present paper we investigate the Hawking radiation of asymptotically non-flat dyonic black holes in 4D Einstein-Maxwell-dilaton gravity in semi-classical approximation. We show that the problem allows an exact analytical treatment and we compute exactly the semi-classical radiation spectrum of both non-extremal and extremal black holes under consideration. In the high frequency regime we find that the Hawking temperature does not agree with the surface gravity when the magnetic charge is nonzero. Even more surprisingly the Hawking temperature is independent of the black hole intrinsic characteristics, as the mass and magnetic charge, and depends only on the linear dilaton background parameter.
10 pages, LaTeX; v2 typos corrected, comments and references added
References in corpus (2)
Cited by in corpus (8)
- Quantization of rotating linear dilaton black holes
- Gravitational Lensing Effect on the Hawking Radiation of Dyonic Black Holes
- Quasinormal modes of charged dilaton black holes and their entropy spectra
- Shadow, absorption and Hawking radiation of a Schwarzschild black hole surrounded by a cloud of strings in Rastall gravity
- Analytical studies of Hawking radiation and quasinormal modes in rotating linear dilatonic black hole
- Hawking radiation of charged rotating AdS black holes in conformal gravity for charged massive particles, complex scalar and Dirac particles
- Hawking radiation from rotating AdS black holes in conformal gravity
- Geodesic structure of five-dimensional non-asymptotically flat 2-branes