Gravitational Evolution of the Large-Scale Density Distribution: The Edgeworth & Gamma Expansions
Abstract
The gravitational evolution of the cosmic one-point Probability Distribution Function (PDF) can be estimated using an analytic approximation that combines gravitational Perturbation Theory (PT) with the Edgeworth expansion around a Gaussian PDF. We present an alternative to the Edgeworth series based on an expansion around the Gamma PDF, which is more appropriate to describe a realistic PDF. The Gamma expansion converges when the PDF exhibits exponential tails, which are predicted by PT and N-body simulations in the weakly non-linear regime (i.e, when the variance, , is small). We compare both expansions to N-body simulations and find that the Gamma expansion yields a better overall match to the numerical results.
Keywords
Cite
@article{arxiv.astro-ph/9910308,
title = {Gravitational Evolution of the Large-Scale Density Distribution: The Edgeworth & Gamma Expansions},
author = {P. Fosalba and E. Gaztanaga and E. Elizalde},
journal= {arXiv preprint arXiv:astro-ph/9910308},
year = {2007}
}
Comments
2 pages, Latex using newpasp.sty, 2 figures. To appear in the proceedings of the IGRAP meeting on "Clustering at high redshift" (Marseille, June 1999)