The Atacama Cosmology Telescope: the stellar content of galaxy clusters selected using the Sunyaev-Zel'dovich effect
Matt Hilton, Matthew Hasselfield, Crist\'obal Sif\'on, Andrew J., Baker, L. Felipe Barrientos, Nicholas Battaglia, J. Richard Bond, Devin, Crichton, Sudeep Das, Mark J. Devlin, Megan Gralla, Amir Hajian, Adam D., Hincks, John P. Hughes, Leopoldo Infante, Kent D. Irwin

TL;DR
This study measures the stellar content of galaxy clusters selected via the Sunyaev-Zel'dovich effect using Spitzer data, revealing correlations between stellar mass and SZ observables, and providing insights into baryon content.
Contribution
First measurement of stellar mass in SZ-selected galaxy clusters, establishing scaling relations with SZ signals and analyzing stellar mass fractions.
Findings
Significant correlation between BCG stellar mass and Y500.
Scaling of Y500 with total stellar mass observed.
Stellar mass fraction ranges from 0.006 to 0.034.
Abstract
We present a first measurement of the stellar mass component of galaxy clusters selected via the Sunyaev-Zel'dovich (SZ) effect, using 3.6 um and 4.5 um photometry from the Spitzer Space Telescope. Our sample consists of 14 clusters detected by the Atacama Cosmology Telescope (ACT), which span the redshift range 0.27 < z < 1.07 (median z = 0.50), and have dynamical mass measurements, accurate to about 30 per cent, with median M500 = 6.9 x 10^{14} MSun. We measure the 3.6 um and 4.5 um galaxy luminosity functions, finding the characteristic magnitude (m*) and faint-end slope (alpha) to be similar to those for IR-selected cluster samples. We perform the first measurements of the scaling of SZ-observables (Y500 and y0) with both brightest cluster galaxy (BCG) stellar mass and total cluster stellar mass (M500star). We find a significant correlation between BCG stellar mass and Y500…
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