Propagation in a thermal graviton background


Autoria(s): Arteaga Barriel, Daniel; Parentani, Renaud; Verdaguer Oms, Enric, 1950-
Contribuinte(s)

Universitat de Barcelona

Data(s)

11/05/2010

Resumo

It is well known that radiative corrections evaluated in nontrivial backgrounds lead to effective dispersion relations which are not Lorentz invariant. Since gravitational interactions increase with energy, gravity-induced radiative corrections could be relevant for the trans-Planckian problem. As a first step to explore this possibility, we compute the one-loop radiative corrections to the self-energy of a scalar particle propagating in a thermal bath of gravitons in Minkowski spacetime. We obtain terms which originate from the thermal bath and which indeed break the Lorentz invariance that possessed the propagator in the vacuum. Rather unexpectedly, however, the terms which break Lorentz invariance vanish in the high three-momentum limit. We also found that the imaginary part, which gives the rate of approach to thermal equilibrium, vanishes at one loop.

Identificador

http://hdl.handle.net/2445/12376

Idioma(s)

eng

Publicador

The American Physical Society

Direitos

(c) The American Physical Society, 2004

info:eu-repo/semantics/openAccess

Palavras-Chave #Gravetat quàntica #Teoria quàntica de camps #Espai i temps #Partícules (Física nuclear) #Quantum gravity #Quantum field theory #Space and time #Particles (Nuclear physics)
Tipo

info:eu-repo/semantics/article