paper

Vacuum polarization in two-dimensional static spacetimes and dimensional reduction

arXiv:hep-th/0202036 · doi:10.1103/PhysRevD.66.024014

Abstract

We obtain an analytic approximation for the effective action of a quantum scalar field in a general static two-dimensional spacetime. We apply this to the dilaton gravity model resulting from the spherical reduction of a massive, non-minimally coupled scalar field in the four-dimensional Schwarzschild geometry. Careful analysis near the event horizon shows the resulting two-dimensional system to be regular in the Hartle-Hawking state for general values of the field mass, coupling, and angular momentum, while at spatial infinity it reduces to a thermal gas at the black-hole temperature.

REVTeX 4, 23 pages. Accepted by PRD. Minor modifications from original version