English

The DESI-Lensing Mock Challenge: large-scale cosmological analysis of 3x2-pt statistics

Cosmology and Nongalactic Astrophysics 2025-03-11 v2

Abstract

The current generation of large galaxy surveys will test the cosmological model by combining multiple types of observational probes. Realising the statistical promise of these new datasets requires rigorous attention to all aspects of analysis including cosmological measurements, modelling, covariance and parameter likelihood. In this paper we present the results of an end-to-end simulation study designed to test the analysis pipeline for the combination of the Dark Energy Spectroscopic Instrument (DESI) Year 1 galaxy redshift dataset and separate weak gravitational lensing information from the Kilo-Degree Survey, Dark Energy Survey and Hyper-Suprime-Cam Survey. Our analysis employs the 3x2-pt correlation functions including cosmic shear and galaxy-galaxy lensing, together with the projected correlation function of the spectroscopic DESI lenses. We build realistic simulations of these datasets including galaxy halo occupation distributions, photometric redshift errors, weights, multiplicative shear calibration biases and magnification. We calculate the analytical covariance of these correlation functions including the Gaussian, noise and super-sample contributions, and show that our covariance determination agrees with estimates based on the ensemble of simulations. We use a Bayesian inference platform to demonstrate that we can recover the fiducial cosmological parameters of the simulation within the statistical error margin of the experiment, investigating the sensitivity to scale cuts. This study is the first in a sequence of papers in which we present and validate the large-scale 3x2-pt cosmological analysis of DESI-Y1.

Keywords

Cite

@article{arxiv.2412.12548,
  title  = {The DESI-Lensing Mock Challenge: large-scale cosmological analysis of 3x2-pt statistics},
  author = {C. Blake and C. Garcia-Quintero and S. Ahlen and D. Bianchi and D. Brooks and T. Claybaugh and A. de la Macorra and J. DeRose and A. Dey and P. Doel and N. Emas and S. Ferraro and J. E. Forero-Romero and G. Gutierrez and S. Heydenreich and K. Honscheid and C. Howlett and M. Ishak and S. Joudaki and E. Jullo and R. Kehoe and D. Kirkby and A. Kremin and A. Krolewski and M. Landriau and J. U. Lange and A. Leauthaud and M. E. Levi and M. Manera and R. Miquel and J. Moustakas and G. Niz and W. J. Percival and I. Pérez-Ràfols and A. Porredon and G. Rossi and R. Ruggeri and E. Sanchez and C. Saulder and D. Schlegel and D. Sprayberry and Z. Sun and G. Tarlé and B. A. Weaver},
  journal= {arXiv preprint arXiv:2412.12548},
  year   = {2025}
}

Comments

29 pages, 17 figures, accepted for publication in The Open Journal of Astrophysics