Observational Tests of the Mass-Temperature Relation for Galaxy Clusters
Abstract
We examine the relationship between the mass and x-ray gas temperature of galaxy clusters using data drawn from the literature. Simple theoretical arguments suggest that the mass of a cluster is related to the x-ray temperature as . Virial theorem mass estimates based on cluster galaxy velocity dispersions seem to be accurately described by this scaling with a normalization consistent with that predicted by the simulations of Evrard, Metzler, & Navarro (1996). X-ray mass estimates which employ spatially resolved temperature profiles also follow a scaling although with a normalization about 40% lower than that of the fit to the virial masses. However, the isothermal -model and x-ray surface brightness deprojection masses follow a steeper scaling. The steepness of the isothermal estimates is due to their implicitly assumed dark matter density profile of at large radii while observations and simulations suggest that clusters follow steeper profiles (e.g., ).
Cite
@article{arxiv.astro-ph/9902151,
title = {Observational Tests of the Mass-Temperature Relation for Galaxy Clusters},
author = {Donald J. Horner and Richard F. Mushotzky and Caleb A. Scharf},
journal= {arXiv preprint arXiv:astro-ph/9902151},
year = {2009}
}
Comments
25 pages, 10 figures, accepted by ApJ