The Atacama Cosmology Telescope: Probing the Baryon Content of SDSS DR15 Galaxies with the Thermal and Kinematic Sunyaev-Zel'dovich Effects
Eve M. Vavagiakis, Patricio A. Gallardo, Victoria Calafut, Stefania, Amodeo, Simone Aiola, Jason E. Austermann, Nicholas Battaglia, Elia S., Battistelli, James A. Beall, Rachel Bean, J. Richard Bond, Erminia Calabrese,, Steve K. Choi, Nicholas F. Cothard, Mark J. Devlin

TL;DR
This study uses high signal-to-noise measurements of the thermal and kinematic Sunyaev-Zel'dovich effects from SDSS galaxies observed by ACT to estimate their baryon content, testing cosmological models and cluster physics.
Contribution
It provides the first high-precision comparison of tSZ and kSZ derived baryon content estimates across multiple galaxy luminosity bins.
Findings
tSZ and kSZ estimates agree within 1σ in two luminosity bins
Optical depth estimates account for one third to all of the predicted baryon content
Results support the use of SZ effects to test cluster formation models
Abstract
We present high signal-to-noise measurements (up to 12) of the average thermal Sunyaev Zel'dovich (tSZ) effect from optically selected galaxy groups and clusters and estimate their baryon content within a 2.1 radius aperture. Sources from the Sloan Digital Sky Survey (SDSS) Baryon Oscillation Spectroscopic Survey (BOSS) DR15 catalog overlap with 3,700 sq. deg. of sky observed by the Atacama Cosmology Telescope (ACT) from 2008 to 2018 at 150 and 98 GHz (ACT DR5), and 2,089 sq. deg. of internal linear combination component-separated maps combining ACT and data (ACT DR4). The corresponding optical depths, , which depend on the baryon content of the halos, are estimated using results from cosmological hydrodynamic simulations assuming an AGN feedback radiative cooling model. We estimate the mean mass of the halos in multiple luminosity bins, and…
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