The Atacama Cosmology Telescope: Physical Properties of Sunyaev-Zel'dovich Effect Clusters on the Celestial Equator
Felipe Menanteau, Crist\'obal Sif\'on, L. Felipe Barrientos, Nicholas, Battaglia, J. Richard Bond, Devin Crichton, Sudeep Das, Mark J. Devlin,, Rolando D\"unner, Megan Gralla, Amir Hajian, Matthew Hasselfield, Matt, Hilton, Adam D. Hincks, John P. Hughes, Leopoldo Infante

TL;DR
This study characterizes 68 galaxy clusters detected via the Sunyaev-Zel'dovich Effect by ACT, providing optical and X-ray properties, confirming new clusters up to z~1.3, and analyzing their mass, richness, and spatial offsets.
Contribution
First comprehensive optical and X-ray analysis of ACT SZ-selected clusters, including discovery of new high-redshift clusters and detailed property measurements.
Findings
49 clusters confirmed up to z~1.3, including 22 new discoveries.
X-ray data confirms the massive nature of the sample.
No significant offset between SZ centroid and BCG location.
Abstract
We present the optical and X-ray properties of 68 galaxy clusters selected via the Sunyaev-Zel'dovich Effect at 148 GHz by the Atacama Cosmology Telescope (ACT). Our sample, from an area of 504 square degrees centered on the celestial equator, is divided into two regions. The main region uses 270 square degrees of the ACT survey that overlaps with the co-added ugriz imaging from the Sloan Digital Sky Survey (SDSS) over Stripe 82 plus additional near-infrared pointed observations with the Apache Point Observatory 3.5-meter telescope. We confirm a total of 49 clusters to z~1.3, of which 22 (all at z>0.55) are new discoveries. For the second region the regular-depth SDSS imaging allows us to confirm 19 more clusters up to z~0.7, of which 10 systems are new. We present the optical richness, photometric redshifts, and separation between the SZ position and the brightest cluster galaxy (BCG).…
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