A Model for Lightcone Fluctuations due to Stress Tensor Fluctuations
Abstract
We study a model for quantum lightcone fluctuations in which vacuum fluctuations of the electric field and of the squared electric field in a nonlinear dielectric material produce variations in the flight times of probe pulses. When this material has a non-zero third order polarizability, the flight time variations arise from squared electric field fluctuations, and are analogous to effects expected when the stress tensor of a quantized field drives passive spacetime geometry fluctuations. We also discuss the dependence of the squared electric field fluctuations upon the geometry of the material, which in turn determines a sampling function for averaging the squared electric field along the path of the pulse. This allows us to estimate the probability of especially large fluctuations, which is a measure of the probability distribution for quantum stress tensor fluctuations.
Cite
@article{arxiv.1602.03857,
title = {A Model for Lightcone Fluctuations due to Stress Tensor Fluctuations},
author = {C. H. G. Bessa and V. A. De Lorenci and L. H. Ford and C. C. H. Ribeiro},
journal= {arXiv preprint arXiv:1602.03857},
year = {2016}
}
Comments
9 pages, 2 figures