Fluctuation and dissipation within a deformed holographic model with backreaction
Abstract
In this work we study the fluctuation and dissipation of a string attached to a brane in a deformed and backreated AdS-Schwarzschild spacetime. This space is a solution of Einstein-dilaton equations and contains a conformal exponential factor in the metric. We consider the backreaction contributions coming only from the exponential warp factor on the AdS-Schwarzschild black hole, where the string and brane are in the probe approximation. Within this Lorentz invariant holographic model we have computed the admittance, the diffusion coefficient, the two-point functions and the regularized mean square displacement . From this quantity we obtain the diffuse and ballistic regimes characteristic of the Brownian motion. From the two-point functions and the admittance, we also have checked the well know fluctuation-dissipation theorem in this set up.
Cite
@article{arxiv.2010.15293,
title = {Fluctuation and dissipation within a deformed holographic model with backreaction},
author = {Nathan G. Caldeira and Eduardo Folco Capossoli and Carlos A. D. Zarro and Henrique Boschi-Filho},
journal= {arXiv preprint arXiv:2010.15293},
year = {2021}
}
Comments
V2: 14 pages, 2 figures. Abstract changed. Text improved. Typos corrected. Results unchanged. This version matches the published one in PLB