Determination of cosmological parameters from large scale structure observations
Abstract
The possibility of determining cosmological parameters on the basis of a wide set of observational data including the Abell-ACO cluster power spectrum and mass function, peculiar velocities of galaxies, the distribution of Ly- clouds and CMB temperature fluctuations is analyzed. Using a minimization method, assuming and no contribution from gravity waves, we found that a tilted MDM model with one sort of massive neutrinos and the parameters , (), , , and matches observational data best. is higher for more species of massive neutrinos, for two and for three species. raises by and respectively. Varying only a subset of parameters and fixing the others shows also that the observational data set used here rules out pure CDM models with , scale invariant primordial power spectrum, zero cosmological constant and spatial curvature at a very high confidence level, . The corresponding class of MDM models are ruled out at C.L. It is notable also that this data set determines the amplitude of scalar fluctuations approximately at the same level as COBE four-year data. It indicates that a possible tensor component in the COBE data cannot be very substantial.
Cite
@article{arxiv.astro-ph/0002522,
title = {Determination of cosmological parameters from large scale structure observations},
author = {B. Novosyadlyj and R. Durrer and S. Gottloeber and V. N. Lukash and S. Apunevych},
journal= {arXiv preprint arXiv:astro-ph/0002522},
year = {2007}
}
Comments
9 pages, 1 figures (Proceedings of IV International Conference "Cosmology. Relativistic Astrophysics. Cosmoparticle Physics", Moscow, 17-24 October 1999; to be published in "Gravitation & Cosmology, Vol. 5 (1999), Supplement)