X-ray Properties of the First SZE-selected Galaxy Cluster Sample from the South Pole Telescope
K. Andersson, B. A. Benson, P. A. R. Ade, K. A. Aird, B. Armstrong, M., Bautz, L. E. Bleem, M. Brodwin, J. E. Carlstrom, C. L. Chang, T. M. Crawford,, A. T. Crites, T. de Haan, S. Desai, M. A. Dobbs, J. P. Dudley, R. J. Foley,, W. R. Forman, G. Garmire, E. M. George

TL;DR
This study analyzes X-ray and SZ data of 15 galaxy clusters from the South Pole Telescope to explore their properties and scaling relations, confirming self-similar behavior and comparing mass estimates from different methods.
Contribution
First combined X-ray and SZ analysis of a new SZ-selected galaxy cluster sample, establishing scaling relations and comparing mass estimates from different techniques.
Findings
Y_SZ-Y_X relation normalization is 0.82 +- 0.07
Y_SZ-M_500 relation slope is consistent with self-similar models
SZ mass estimates are within ~15% of X-ray derived masses
Abstract
We present results of X-ray observations of a sample of 15 clusters selected via their imprint on the cosmic microwave background (CMB) from the thermal Sunyaev-Zel'dovich (SZ) effect. These clusters are a subset of the first SZ-selected cluster catalog, obtained from observations of 178 deg^2 of sky surveyed by the South Pole Telescope. Using X-ray observations with Chandra and XMM-Newton, we estimate the temperature, T_X, and mass, M_g, of the intracluster medium (ICM) within r_500 for each cluster. From these, we calculate Y_X=M_g T_X and estimate the total cluster mass using a M_500-Y_X scaling relation measured from previous X-ray studies. The integrated Comptonization, Y_SZ, is derived from the SZ measurements, using additional information from the X-ray measured gas density profiles and a universal temperature profile. We calculate scaling relations between the X-ray and SZ…
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