Super-Hubble Nonlinear Perturbations During Inflation
Abstract
We show that the non-linear evolution of long wavelength perturbations may be important in a wide class of inflationary scenarios. We develop a solution for the evolution of such nonlinear perturbations which is exact to first order in a gradient expansion. As a first application, we demonstrate that in single field models of inflation there can be no parametric amplification of super-Hubble modes during reheating. We consider the implications of the solution for recent discussions of the back-reaction effect of long wavelength perturbations on the background geometry, give a new derivation of the equation of motion of stochastic inflation, and demonstrate that if the (generalized) slow-rolling condition is not satisfied, then inevitably long wavelength vector modes for gravitational fluctuations will be generated.
Cite
@article{arxiv.gr-qc/0011075,
title = {Super-Hubble Nonlinear Perturbations During Inflation},
author = {Niayesh Afshordi and Robert Brandenberger},
journal= {arXiv preprint arXiv:gr-qc/0011075},
year = {2009}
}
Comments
8 pages, 1 figure added and minor changes made. Accepted for publication in Physical Review D