Non-Gaussianity of the density distribution in accelerating universes
Abstract
According to recent observations, the existence of the dark energy has been considered. Even though we have obtained the constraint of the equation of the state for dark energy () as by combining WMAP data with other astronomical data, in order to pin down , it is necessary to use other independent observational tools. For this purpose, we consider the dependence of the non-Gaussianity of the density distribution generated by nonlinear dynamics. To extract the non-Gaussianity, we follow a semi-analytic approach based on Lagrangian linear perturbation theory, which provides an accurate value for the quasi-nonlinear region. From our results, the difference of the non-Gaussianity between and is about 4% while that between and is about . For the highly non-linear region, we estimate the difference by combining this perturbative approach with N-body simulation executed for our previous paper. From this, we can expect the difference to be more enhanced in the low- region, which suggests that the non-Gaussianity of the density distribution potentially plays an important role for extracting the information of dark energy.
Cite
@article{arxiv.astro-ph/0511688,
title = {Non-Gaussianity of the density distribution in accelerating universes},
author = {Takayuki Tatekawa and Shuntaro Mizuno},
journal= {arXiv preprint arXiv:astro-ph/0511688},
year = {2009}
}
Comments
15 pages, 4 figures, accepted for publication in JCAP; v2: smoothing scale has been changed