English

An X-ray Size-Temperature Relation for Galaxy Clusters: Observation and Simulation

Astrophysics 2009-10-30 v1

Abstract

We show that galaxy clusters conform to a tight relation between X-ray isophotal size R_I and emission weighted intracluster medium (ICM) temperature T_X. The best fit relation for 41 members of an X-ray flux limited cluster sample is: logRI=(0.93±0.11)log(<TX>/6keV) (0.08±0.01)log{R_I}= (0.93\pm0.11) log{(<T_X>/6 keV)} -\ (0.08\pm0.01); intrinsic scatter in size about the relation is 15%, and for 30 clusters with T_X>4 keV the scatter is reduced to 10%. The existence of the size-temperature (ST) relation indicates the ICM structure is a well behaved function of T_X. We use an ensemble of gasdynamic simulations to demonstrate that a cluster population experiencing present epoch growth nonetheless conforms to an ST relation with scatter similar to that observed; the simulations also exhibit a tight relation between M_{vir} and T_X, providing the suggestion that a similar relation holds for observed clusters. We use the scatter in R_I to estimate limits on the RMS variation in ICM mass fraction \delta f_{ICM} at constant T_X: \delta f/f_{ICM}<22% (<14% for clusters with T_X>4 keV). It appears that a mechanism like feedback from galaxy winds, which introduces systematic structural changes in the ICM, is required to reproduce the observed slope of the ST relation.

Keywords

Cite

@article{arxiv.astro-ph/9707184,
  title  = {An X-ray Size-Temperature Relation for Galaxy Clusters: Observation and Simulation},
  author = {Joseph J. Mohr and August E. Evrard},
  journal= {arXiv preprint arXiv:astro-ph/9707184},
  year   = {2009}
}

Comments

Accepted for publication in ApJ, 9 pages Latex, 3 figures

R2 v1 2026-07-22T09:34:38.957Z