DESI Mock Challenge: Constructing DESI galaxy catalogues based on FastPM simulations
Abstract
Together with larger spectroscopic surveys such as the Dark Energy Spectroscopic Instrument (DESI), the precision of large scale structure studies and thus the constraints on the cosmological parameters are rapidly improving. Therefore, one must build realistic simulations and robust covariance matrices. We build galaxy catalogues by applying a Halo Occupation Distribution (HOD) model upon the \textsc{FastPM} simulations, such that the resulting galaxy clustering reproduces high resolution -body simulations. While the resolution and halo finder are different from the reference simulations, we reproduce the reference galaxy two-point clustering measurements -- monopole and quadrupole -- to a precision required by the DESI Year 1 Emission Line Galaxy sample down to non-linear scales, i.e. or . Furthermore, we compute covariance matrices based on the resulting \textsc{FastPM} galaxy clustering -- monopole and quadrupole. We study for the first time the effect of fitting on Fourier conjugate [e.g. power spectrum] on the covariance matrix of the Fourier counterpart [e.g. correlation function]. We estimate the uncertainties of the two parameters of a simple clustering model and observe a maximum variation of 20 per cent for the different covariance matrices. Nevertheless, for most studied scales the scatter is between two to ten per cent Consequently, using the current pipeline we can precisely reproduce the clustering of -body simulations and the resulting covariance matrices provide robust uncertainty estimations against HOD fitting scenarios. We expect our methodology will be useful for the coming DESI data analyses and their extension for other studies.
Keywords
Cite
@article{arxiv.2307.14197,
title = {DESI Mock Challenge: Constructing DESI galaxy catalogues based on FastPM simulations},
author = {Andrei Variu and Shadab Alam and Cheng Zhao and Chia-Hsun Chuang and Yu Yu and Daniel Forero-Sánchez and Zhejie Ding and Jean-Paul Kneib and Jessica Nicole Aguilar and Steven Ahlen and David Brooks and Todd Claybaugh and Shaun Cole and Kyle Dawson and Axel de la Macorra and Peter Doel and Jaime E. Forero-Romero and Satya Gontcho A Gontcho and Klaus Honscheid and Martin Landriau and Marc Manera and Ramon Miquel and Jundan Nie and Will Percival and Claire Poppett and Mehdi Rezaie and Graziano Rossi and Eusebio Sanchez and Michael Schubnell and Hee-Jong Seo and Gregory Tarlé and Mariana Vargas Magana and Zhimin Zhou},
journal= {arXiv preprint arXiv:2307.14197},
year = {2023}
}
Comments
21 pages, 18 figures, submitted to MNRAS, Zenodo link https://doi.org/10.5281/zenodo.8185822