Self-Accelerating Universe in Galileon Cosmology
Abstract
We present a cosmological model with a solution that self-accelerates at late-times without signs of ghost instabilities on small scales. The model is a natural extension of the Brans-Dicke (BD) theory including a non-linear derivative interaction, which appears in a theory with the Galilean shift symmetry. The existence of the self-accelerating universe requires a negative BD parameter but, thanks to the non-linear term, small fluctuations around the solution are stable on small scales. General relativity is recovered at early times and on small scales by this non-linear interaction via the Vainshtein mechanism. At late time, gravity is strongly modified and the background cosmology shows a phantom-like behaviour and the growth rate of structure formation is enhanced. Thus this model leaves distinct signatures in cosmological observations and it can be distinguished from standard CDM cosmology.
Keywords
Cite
@article{arxiv.0909.4538,
title = {Self-Accelerating Universe in Galileon Cosmology},
author = {Fabio P Silva and Kazuya Koyama},
journal= {arXiv preprint arXiv:0909.4538},
year = {2010}
}
Comments
references added, accepted for publication in PRD, 5 pages, 4 figures