arXiv Analytics

Sign in

arXiv:1405.3466 [hep-th]AbstractReferencesReviewsResources

Stability properties of Hawking radiation in the presence of ultraviolet violation of local Lorentz invariance

Antonin Coutant

Published 2014-05-14Version 1

In this thesis, we study several features of Hawking radiation in the presence of ultraviolet Lorentz violations. These violations are implemented by a modified dispersion relation that becomes nonlinear at short wavelengths. The motivations of this work arise on the one hand from the developing field of analog gravity, where we aim at measuring the Hawking effect in fluid flows that mimic black hole space-times, and on the other hand from the possibility that quantum gravity effects might be approximately modeled by a modified dispersion relation. We develop several studies on various aspects of the problem. First we obtain precise characterizations about the deviations from the Hawking result of black hole radiation, which are induced by dispersion. Second, we study the emergence, both in white hole flows or for massive fields, of a macroscopic standing wave, spontaneously produced from the Hawking effect, and known as `undulation'. Third, we describe in detail an instability named black hole laser, which arises in the presence of two horizons, where Hawking radiation is self-amplified and induces an exponentially growing in time emitted flux.

Comments: Ph.D. Thesis. 205 pages, 5 chapters, 37 figures. Tiny improvements with respect to official university version
Categories: hep-th, gr-qc
Related articles: Most relevant | Search more
arXiv:1202.5069 [hep-th] (Published 2012-02-23)
Flowing Funnels: Heat sources for field theories and the AdS_3 dual of CFT_2 Hawking radiation
arXiv:0706.2207 [hep-th] (Published 2007-06-14, updated 2007-07-18)
Relationship between Hawking radiation from black holes and spontaneous excitation of atoms
arXiv:hep-th/9511147 (Published 1995-11-21)
Decoherence of Black Holes by Hawking Radiation