Scaling Dark Energy in a Five-Dimensional Bouncing Cosmological Model
Abstract
We consider a 5-dimensional Ricci flat bouncing cosmological model in which the 4-dimensional induced matter contains two components at late times - the cold dark matter (CDM)+baryons and dark energy. We find that the arbitrary function contained in the solution plays a similar role as the potential in quintessence and phantom dark energy models. To resolve the coincidence problem, it is generally believed that there is a scaling stage in the evolution of the universe. We analyze the condition for this stage and show that a hyperbolic form of the function can work well in this property. We find that during the scaling stage (before ), the dark energy behaves like (but not identical to) a cold dark matter with an adiabatic sound speed and . After , the pressure of dark energy becomes negative. The transition from deceleration to acceleration happens at which, as well as other predictions of the model, agree with current observations.
Keywords
Cite
@article{arxiv.astro-ph/0507250,
title = {Scaling Dark Energy in a Five-Dimensional Bouncing Cosmological Model},
author = {Lixin Xu and Hongya Liu},
journal= {arXiv preprint arXiv:astro-ph/0507250},
year = {2009}
}
Comments
13 pages, 1 table, 3 figures, published version, references added