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March 21, 2024Physical review. D/Physical review. D.33 citationsOpen Access

Dark Energy Survey Year 3 results: Simulation-based cosmological inference with wavelet harmonics, scattering transforms, and moments of weak lensing mass maps. Validation on simulations

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MGM. GattiNJN JeffreyLWL. Whiteway

Key Points

  • Improved cosmological constraints on parameters like S8 and Ωm were achieved using non-Gaussian statistics and scattering transforms.
  • Wavelet phase harmonics exhibited the strongest performance combined with second moments, enhancing data interpretations significantly.
  • Methodological advances are validated extensively using detailed simulations designed for the Dark Energy Survey data analysis framework, emphasizing their robustness and accuracy in constraining cosmological parameters effectively while considering systematics. The analysis shows enhancements up to 90 percent in certain constraints when leveraging the combination of diverse statistics for parameter inference.

Abstract

Beyond-two-point statistics contain additional information on cosmological as well as astrophysical and observational (systematics) parameters. In this methodology paper we provide an end-to-end simulation-based analysis of a set of Gaussian and non-Gaussian weak lensing statistics using detailed mock catalogs of the Dark Energy Survey (DES). We implement: 1) second and third moments; 2) wavelet phase harmonics (WPH); 3) the scattering transform (ST). Our analysis is fully based on simulations, it spans a space of seven νwCDM cosmological parameters, and it forward models the most relevant sources of systematics of the data (masks, noise variations, clustering of the sources, intrinsic alignments, and shear and redshift calibration). We implement a neural network compression of the summary statistics, and we estimate the parameter posteriors using a likelihood-free-inference approach. We validate the pipeline extensively, and we find that WPH exhibits the strongest performance when combined with second moments, followed by ST, and then by third moments. The combination of all the different statistics further enhances constraints with respect to second moments, up to 25 percent, 15 percent, and 90 percent for S8, Ωm, and the figure-of-merit FoMS8,Ωm, respectively. We further find that non-Gaussian statistics improve constraints on w and on the amplitude of intrinsic alignment with respect to second moments constraints. The methodological advances presented here are suitable for application to Stage IV surveys from Euclid, Rubin-LSST, and Roman with additional validation on mock catalogs for each survey. In a companion paper we present an application to DES Year 3 data.13 MoreReceived 4 November 2023Accepted 12 February 2024DOI:https://doi.org/10.1103/PhysRevD.109.063534© 2024 American Physical SocietyPhysics Subject Headings (PhySH)Research AreasCosmological parametersDark energyLarge scale structure of the UniverseTechniquesAstrophysical & cosmological simulationsGravitation, Cosmology & Astrophysics

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Gatti et al. (2024) studied this question.

synapsesocial.com/papers/68e72f63b6db6435876a9319https://doi.org/10.1103/physrevd.109.063534
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