Density Profiles of Collisionless Equilibria. I. Spherical Isotropic Systems
Abstract
We investigate the connection between collisionless equilibria and the phase-space relation between density and velocity dispersion found in simulations of dark matter halo formation, . Understanding this relation will shed light on the physics relevant to collisionless collapse and on the subsequent structures formed. We show that empirical density profiles that provide good fits to N-body halos also happen to have nearly scale-free \psd distributions when in equilibrium. We have also done a preliminary investigation of variables other than that may match or supercede the correlation with . In the same vein, we show that , where is the most appropriate combination to use in discussions of the power-law relationship. Since the mechanical equilibrium condition that characterizes the final systems does not by itself lead to power-law distributions, our findings prompt us to posit that dynamical collapse processes (such as violent relaxation) are responsible for the radial power-law nature of the \psd distributions of virialized systems.
Keywords
Cite
@article{arxiv.astro-ph/0510332,
title = {Density Profiles of Collisionless Equilibria. I. Spherical Isotropic Systems},
author = {Eric I. Barnes and Liliya L. R. Williams and Arif Babul and Julianne J. Dalcanton},
journal= {arXiv preprint arXiv:astro-ph/0510332},
year = {2009}
}
Comments
21 pages, 8 fig. (2 new), accepted by ApJ, a PDF version with full resolution figures can be found at http://www.astro.umn.edu/~barnes/research/astroph.html