Dark Energy Survey Year 3 Results: Cosmological Constraints from Galaxy Clustering and Weak Lensing
DES Collaboration: T. M. C. Abbott, M. Aguena, A. Alarcon, S. Allam,, O. Alves, A. Amon, F. Andrade-Oliveira, J. Annis, S. Avila, D. Bacon, E., Baxter, K. Bechtol, M. R. Becker, G. M. Bernstein, S. Bhargava, S. Birrer, J., Blazek, A. Brandao-Souza, S. L. Bridle, D. Brooks

TL;DR
This paper presents cosmological constraints from the Dark Energy Survey Year 3 data, combining galaxy clustering and weak lensing measurements to test cosmological models and compare with Planck CMB results.
Contribution
First comprehensive cosmological analysis from DES Year 3 data using 3×2pt correlations, providing constraints consistent with Planck and combining multiple cosmological probes.
Findings
Measured $S_8$ around 0.776 in $ m extLambda$CDM
Found $ m extOmega_m$ approximately 0.34 in $ m extLambda$CDM
Achieved joint constraints with Planck data on neutrino mass and dark energy parameters
Abstract
We present the first cosmology results from large-scale structure in the Dark Energy Survey (DES) spanning 5000 deg. We perform an analysis combining three two-point correlation functions (32pt): (i) cosmic shear using 100 million source galaxies, (ii) galaxy clustering, and (iii) the cross-correlation of source galaxy shear with lens galaxy positions. The analysis was designed to mitigate confirmation or observer bias; we describe specific changes made to the lens galaxy sample following unblinding of the results. We model the data within the flat CDM and CDM cosmological models. We find consistent cosmological results between the three two-point correlation functions; their combination yields clustering amplitude and matter density in CDM, mean with 68% confidence limits;…
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