Weak Lensing Analysis of SPT selected Galaxy Clusters using Dark Energy Survey Science Verification Data
C. Stern, J. P. Dietrich, S. Bocquet, D. Applegate, J. J. Mohr, S. L., Bridle, M. Carrasco Kind, D. Gruen, M. Jarvis, T. Kacprzak, A. Saro, E., Sheldon, M. A. Troxel, J. Zuntz, B. A. Benson, R. Capasso, I. Chiu, S. Desai,, D. Rapetti, C. L. Reichardt, B. Saliwanchik

TL;DR
This study uses Dark Energy Survey data to analyze weak lensing effects on galaxy clusters detected by the South Pole Telescope, aiming to refine mass-observable relations and improve cosmological constraints.
Contribution
It introduces a method to constrain cluster masses and cosmology simultaneously using weak lensing and SZE data, accounting for biases and scatter in mass estimates.
Findings
Lower cluster masses than previous measurements.
Derived SPT mass-observable relation normalization and slope.
Method sets foundation for future combined cosmological analyses.
Abstract
We present weak lensing (WL) mass constraints for a sample of massive galaxy clusters detected by the South Pole Telescope (SPT) via the Sunyaev-Zeldovich effect (SZE). We use imaging data obtained from the Science Verification (SV) phase of the Dark Energy Survey (DES) to fit the WL shear signal of 33 clusters in the redshift range with NFW profiles and to constrain a four-parameter SPT mass-observable relation. To account for biases in WL masses, we introduce a WL mass to true mass scaling relation described by a mean bias and an intrinsic, log-normal scatter. We allow for correlated scatter within the WL and SZE mass-observable relations and use simulations to constrain priors on nuisance parameters related to bias and scatter from WL. We constrain the normalization of the relation, when using a prior on…
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