English

Observational Tests of the Mass-Temperature Relation for Galaxy Clusters

Astrophysics 2009-10-31 v1

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 MTx3/2M \propto T_x^{3/2}. 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 Tx3/2T_x^{3/2} scaling although with a normalization about 40% lower than that of the fit to the virial masses. However, the isothermal β\beta-model and x-ray surface brightness deprojection masses follow a steeper Tx1.82.0\propto T_x^{1.8-2.0} scaling. The steepness of the isothermal estimates is due to their implicitly assumed dark matter density profile of ρ(r)r2\rho(r) \propto r^{-2} at large radii while observations and simulations suggest that clusters follow steeper profiles (e.g., ρ(r)r2.4\rho(r) \propto r^{-2.4}).

Keywords

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

R2 v1 2026-07-22T09:46:14.679Z