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DESI DR2 reference mocks: clustering results from Uchuu-BGS and LRG

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Abstract

The aim of this work is to construct mock galaxy catalogues that accurately reproduce the redshift evolution of galaxy number density, clustering statistics, and baryonic properties, such as stellar mass for luminous red galaxies (LRGs) and absolute magnitude in the r-band for the bright galaxy sample (BGS), based on the first three years of observations from the Dark Energy Spectroscopic Instrument (DESI). To achieve this, we applied the subhalo abundance matching (SHAM) technique to the UchuuN-body simulation, which follows the evolution of 2.1 trillion particles within a volume of 8 h-3 Gpc3, assuming a Planck base-ΛCDM cosmology. Using SHAM, we populated Uchuu subhalos with LRGs and BGS-BRIGHT (r < 19.5) galaxies up to redshift z = 1.1, assigning stellar masses to LRGs and luminosities to BGS galaxies (up to Mr ≤ 20). Furthermore, we analyzed the clustering dependence on stellar mass and luminosity for each tracer. Our results show that the Uchuu BGS-BRIGHT and LRG mocks accurately reproduce the observed redshift evolution of clustering, with better than 5% agreement for separations of 1 < r < 20 h-1 Mpc and below a 10% for 0.1 < r < 1 h-1 Mpc. For the Uchuu-LRG mock, we successfully captured the stellar mass dependence of clustering, while for the Uchuu-BGS mock, we replicated the clustering for various volume-limited subsamples. We also find good agreement between the data and mocks in the dependence of large-scale bias on luminosity for BGS-BRIGHT galaxies and on stellar mass for LRGs. Altogether, these results equip DESI with robust tools for generating high-fidelity lightcones for the remainder of the survey, thereby enhancing our understanding of the galaxy-halo connection.
Original languageEnglish
Article number002
Number of pages34
JournalPhysical Review D
Volume2026
Issue number05
DOIs
Publication statusPublished - 5 May 2026

Keywords

  • astro-ph.GA
  • astro-ph.CO
  • cosmological simulations
  • galaxy clustering
  • galaxy evolution
  • power spectrum

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