Physics – High Energy Physics – High Energy Physics - Theory
Scientific paper
2005-12-15
J.Phys.Conf.Ser. 33 (2006) 457-462
Physics
High Energy Physics
High Energy Physics - Theory
10 pages; Talk given at QG05, Cala Gonone (Italy), September 2005
Scientific paper
We study static quantum corrections of the Schwarzschild metric in the Boulware vacuum state. Due to the absence of a complete analytic expression for the full semiclassical Einstein equations we approach the problem by considering the s-wave approximation and solve numerically the associated backreaction equations. The solution, including quantum effects due to pure vacuum polarization, is similar to the classical Schwarzschild solution up to the vicinity of the classical horizon. However, the radial function has a minimum at a time-like surface close to the location of the classical event horizon. There the g_{00} component of the metric reaches a very small but non-zero value. The analysis unravels how a curvature singularity emerges beyond this bouncing point. We briefly discuss the physical consequences of these results by extrapolating them to a dynamical collapsing scenario.
Fabbri Alessandro
Farese Sara
Navarro-Salas Jose
Olmo Gonzalo J.
Sanchis-Alepuz Helios
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