Dark Energy Survey Year 6 Results: Cosmological Constraints from Cosmic Shear
DES Collaboration: T. M. C. Abbott, M. Aguena, A. Alarcon, O. Alves, A. Amon, D. Anbajagane, F. Andrade-Oliveira, W. d'Assignies, S. Avila, D. Bacon, J. Beas-Gonzalez, K. Bechtol, M. R. Becker, G. M. Bernstein, J. Blazek, S. Bocquet, D. Brooks, H. Camacho, G. Camacho-Ciurana

TL;DR
This paper presents cosmic shear measurements from six years of Dark Energy Survey data, providing precise cosmological constraints consistent with Planck results and demonstrating methodological robustness for future surveys.
Contribution
First six-year cosmic shear analysis from DES with improved signal-to-noise, advanced modeling of uncertainties, and comprehensive comparison with CMB constraints.
Findings
Measured $S_8$ with 1.8-2.5% uncertainty
Results are consistent with Planck 2018 within 2$\sigma$
Methodological improvements enhance robustness for future surveys
Abstract
We present legacy cosmic shear measurements and cosmological constraints using six years of Dark Energy Survey imaging data. From these data, we study ~140 million galaxies (8.29 galaxies/arcmin) that are 50% complete at i=24.0 and extend beyond z=1.2. We divide the galaxies into four redshift bins, and obtain cosmic shear measurement with a signal-to-noise of 83, a factor of 2 higher than the Year 3 analysis. We model the uncertainties due to shear and redshift calibrations, and discard measurements on small angular scales to mitigate baryon feedback and other small-scale uncertainties. We consider two fiducial models to account for the intrinsic alignment (IA) of the galaxies. We conduct a blind analysis in the context of the CDM model and find (marginalized mean with 68% CL) when using the non-linear…
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Taxonomy
TopicsCosmology and Gravitation Theories · Galaxies: Formation, Evolution, Phenomena · Gamma-ray bursts and supernovae
