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X-Ray Properties of the First Sunyaev-Zel_s14dovich Effect Selected Galaxy Cluster Sample from the South Pole Telescope

Andersson, K. and Benson, B.~A. and Ade, P.~A.~R. and Aird, K.~A. and Armstrong, B. and Bautz, M. and Bleem, L.~E. and Brodwin, M. and Carlstrom, J.~E

Keywords

galaxies: clusters: intracluster medium, X-rays: galaxies: clusters

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_s14dovich (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 observables, and find results generally consistent with other measurements and the expectations from simple self-similar behavior. Specifically, we fit a Y_SZ-Y_X relation and find a normalization of 0.82 _s16- 0.07, marginally consistent with the predicted ratio of Y_SZ/Y_X=0.91_s16-0.01 that would be expected from the density and temperature models used in this work. Using the Y_X derived mass estimates, we fit a Y_SZ-M_500 relation and find a slope consistent with the self-similar expectation of Y_SZ ~ M^5/3 with a normalization consistent with predictions from other X-ray studies. We compare the X-ray mass estimates to previously published SZ mass estimates derived from cosmological simulations of the SPT survey. We find that the SZ mass estimates are lower by a factor of 0.89_s16-0.06, which is within the ~15% systematic uncertainty quoted for the simulation-based SZ masses.

Information

Published
2011 as article
738 - page(s): 48
Contact
Prof. Dr. Joseph Mohr
Type
theoretical work
Links
pdf
adsabs.harvard.edu/a…
Related to the research area(s):
E
e-Print
1006.3068

Technische Universitaet Muenchen
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