The mass and galaxy distribution around SZ-selected clusters
T. Shin, B. Jain, S. Adhikari, E. J. Baxter, C. Chang, S. Pandey, A., Salcedo, D. H. Weinberg, A. Amsellem, N. Battaglia, M. Belyakov, T. Dacunha,, S. Goldstein, A. V. Kravtsov, T. N. Varga, T. M. C. Abbott, M. Aguena, A., Alarcon, S. Allam, A. Amon, F. Andrade-Oliveira

TL;DR
This study provides high-precision measurements of mass and galaxy density profiles around SZ-selected clusters, confirming theoretical predictions and offering insights into dark matter and galaxy evolution within clusters.
Contribution
It presents the highest precision measurements of cluster profiles using SZ selection, extending models to the linear regime, and comparing observations with simulations and hydrodynamic predictions.
Findings
Detection of the splashback feature consistent with CDM simulations
Mass profile aligns with theoretical models, constraining dark matter theories
Galaxy and lensing profiles are remarkably similar across scales
Abstract
We present measurements of the radial profiles of the mass and galaxy number density around Sunyaev-Zel'dovich-selected clusters using both weak lensing and galaxy counts. The clusters are selected from the Atacama Cosmology Telescope Data Release 5 and the galaxies from the Dark Energy Survey Year 3 dataset. With signal-to-noise of 62 (43) for galaxy (weak lensing) profiles over scales of about Mpc, these are the highest precision measurements for SZ-selected clusters to date. Because SZ selection closely approximates mass selection, these measurements enable several tests of theoretical models of the mass and light distribution around clusters. Our main findings are: 1. The splashback feature is detected at a consistent location in both the mass and galaxy profiles and its location is consistent with predictions of cold dark matter N-body simulations. 2. The full mass…
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