Cosmological back-reaction in modified gravity and its implications for dark energy
Abstract
We study the effective stress-energy tensor induced by cosmological inhomogeneity in and equivalent scalar-tensor theories, motivated both by models of early universe inflation and by phenomenological alternative cosmologies to the standard -CDM. We use Green and Wald's framework for averaging over classical fluctuations of short-wavelength . By ensuring that the leading non-linear terms from the fluctuations of the Einstein terms and the corrections both contribute in the formal limit as , we derive a diffeomorphism invariant effective stress-energy tensor whose trace is non-vanishing and of the right sign to potentially account for the current acceleration of the universe. However a more phenomenologically acceptable dark energy model would be required if this effect were to fully account for the current acceleration.
Keywords
Cite
@article{arxiv.1406.5398,
title = {Cosmological back-reaction in modified gravity and its implications for dark energy},
author = {Anthony W. H. Preston and Tim R. Morris},
journal= {arXiv preprint arXiv:1406.5398},
year = {2014}
}
Comments
23 pages, references updated, some arguments clarified