Quantum Fields in Hyperbolic Space-Times with Finite Spatial Volume
Abstract
The one-loop effective action for a massive self-interacting scalar field is investigated in -dimensional ultrastatic space-time , being a non-compact hyperbolic manifold with finite volume. Making use of the Selberg trace formula, the -function related to the small disturbance operator is constructed. For an arbitrary gravitational coupling, it is found that has a simple pole at . The one-loop effective action is analysed by means of proper-time regularisations and the one-loop divergences are explicitly found. It is pointed out that, in this special case, also -function regularisation requires a divergent counterterm, which however is not necessary in the free massless conformal invariant coupling case. Finite temperature effects are studied and the high-temperature expansion is presented. A possible application to the problem of the divergences of the entanglement entropy for a free massless scalar field in a Rindler-like space-time is briefly discussed.
Cite
@article{arxiv.hep-th/9605209,
title = {Quantum Fields in Hyperbolic Space-Times with Finite Spatial Volume},
author = {A. A. Bytsenko and Guido Cognola and Sergio Zerbini},
journal= {arXiv preprint arXiv:hep-th/9605209},
year = {2009}
}
Comments
13 pages, LaTex. The contribution of hyperbolic elements has been added. Other minor corrections and references