The Atacama Cosmology Telescope: Sunyaev-Zel'dovich Selected Galaxy Clusters at 148 GHz from Three Seasons of Data
Matthew Hasselfield, Matt Hilton, Tobias A. Marriage, Graeme E., Addison, L. Felipe Barrientos, Nicholas Battaglia, Elia S. Battistelli, J., Richard Bond, Devin Crichton, Sudeep Das, Mark J. Devlin, Simon R. Dicker,, Joanna Dunkley, Rolando Dunner, Joseph W. Fowler

TL;DR
This paper presents a catalog of 68 galaxy clusters detected via the Sunyaev-Zel'dovich effect in the ACT survey, introduces a new pressure profile-based analysis method, and derives cosmological constraints from the data.
Contribution
It introduces a Profile Based Amplitude Analysis using the Universal Pressure Profile, improving cluster mass estimates and cosmological parameter constraints.
Findings
Nearly identical UPP scalings to adiabatic models
Non-thermal pressure models better match dynamical masses
Constraints on and m from combined SZ and other data
Abstract
[Abridged] We present a catalog of 68 galaxy clusters, of which 19 are new discoveries, detected via the Sunyaev-Zel'dovich effect (SZ) at 148 GHz in the Atacama Cosmology Telescope (ACT) survey of 504 square degrees on the celestial equator. A subsample of 48 clusters within the 270 square degree region overlapping SDSS Stripe 82 is estimated to be 90% complete for M_500c > 4.5e14 Msun and 0.15 < z < 0.8. While matched filters are used to detect the clusters, the sample is studied further through a "Profile Based Amplitude Analysis" using a single filter at a fixed \theta_500 = 5.9' angular scale. This new approach takes advantage of the "Universal Pressure Profile" (UPP) to fix the relationship between the cluster characteristic size (R_500) and the integrated Compton parameter (Y_500). The UPP scalings are found to be nearly identical to an adiabatic model, while a model…
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