An exact self-consistent gravitational shock wave in semiclassical gravity
Abstract
We find a self-consistent pp-gravitational shock wave solution to the semiclassical Einstein equations resulting from the approach to the effective action. We model the renormalized matter stress-energy-momentum tensor by massless scalar fields in the Minkowski vacuum plus a classical particle. We show that quantum effects generate a milder singularity at the position of the particle than the classical solution, but the singularity does not disappear. At large distances from the particle, the quantum correction decreases slowly, as ( being the distance to the particle in the shock wave plane). We argue that this large distance correction is a necessary consequence of quantum gravity.
Keywords
Cite
@article{arxiv.gr-qc/9611009,
title = {An exact self-consistent gravitational shock wave in semiclassical gravity},
author = {Carlos O. Lousto and Francisco D. Mazzitelli},
journal= {arXiv preprint arXiv:gr-qc/9611009},
year = {2011}
}
Comments
13 pages, REVTEX, 4 PS figures. Revised version contains a derivation of the solution compatible with its distributional character. The final results, though, are the same