Conserved Quantities in Perturbed Inflationary Universes
Abstract
Given that observations seem to favour a \index{density parameter} , corresponding to an open universe, we consider gauge\hs invariant perturbations of non\hs flat Robertson\hs Walker universes filled with a general imperfect fluid which can also be taken to represent a scalar field. Our aim is to set up the equations that govern the evolution of the density perturbations so that it can be determined through a {\it first order differential equation} with a quantity which is conserved at any length scale, even in non\hs flat universe models, acting as a source term. The quantity generalizes other variables that are conserved in specific cases (for example at large scales in a flat universe) and is useful to connect different epochs in the evolution of density perturbations via a transfer function. We show that the problem of finding a conserved can be reduced to determining two auxiliary variables and , and illustrate the method with two simple examples.
Cite
@article{arxiv.gr-qc/9405008,
title = {Conserved Quantities in Perturbed Inflationary Universes},
author = {Peter Dunsby and Marco Bruni},
journal= {arXiv preprint arXiv:gr-qc/9405008},
year = {2010}
}
Comments
17 Pages, LaTeX