The Central Mass and Phase-Space Densities of Dark Matter Halos: Cosmological Implications
Abstract
Current data suggest that the central mass densities and phase-space densities of cosmological halos in the present universe are correlated with their velocity dispersions over a very wide range of from less than 10 to more than 1000 . Such correlations are an expected consequence of the statistical correlation of the formation epochs of virialized objects in the CDM model with their masses; the smaller-mass halos typically form first and merge to form larger-mass halos later. We have derived the and correlations for different CDM cosmologies and compared the predicted correlations with the observed properties of a sample of low-redshift halos ranging in size from dwarf spheroidal galaxies to galaxy clusters. Our predictions are generally consistent with the data, with preference for the currently-favored, flat CDM model. Such a comparison serves to test the basic CDM paradigm while constraining the background cosmology and the power-spectrum of primordial density fluctuations, including larger wavenumbers than have previously been constrained.
Keywords
Cite
@article{arxiv.astro-ph/0107442,
title = {The Central Mass and Phase-Space Densities of Dark Matter Halos: Cosmological Implications},
author = {Paul R. Shapiro and Ilian T. Iliev},
journal= {arXiv preprint arXiv:astro-ph/0107442},
year = {2009}
}
Comments
12 pages, 3 figures, ApJ Letters, in press (2002); Changed to match the accepted version. Results and figures unchanged; text revisions only