Suppressing the sample variance of DESI-like galaxy clustering with fast simulations
Abstract
Ongoing and upcoming galaxy redshift surveys, such as the Dark Energy Spectroscopic Instrument (DESI) survey, will observe vast regions of sky and a wide range of redshifts. In order to model the observations and address various systematic uncertainties, N-body simulations are routinely adopted, however, the number of large simulations with sufficiently high mass resolution is usually limited by available computing time. Therefore, achieving a simulation volume with the effective statistical errors significantly smaller than those of the observations becomes prohibitively expensive. In this study, we apply the Convergence Acceleration by Regression and Pooling (CARPool) method to mitigate the sample variance of the DESI-like galaxy clustering in the AbacusSummit simulations, with the assistance of the quasi-N-body simulations FastPM. Based on the halo occupation distribution (HOD) models, we construct different FastPM galaxy catalogs, including the luminous red galaxies (LRGs), emission line galaxies (ELGs), and quasars, with their number densities and two-point clustering statistics well matched to those of AbacusSummit. We also employ the same initial conditions between AbacusSummit and FastPM to achieve high cross-correlation, as it is useful in effectively suppressing the variance. Our method of reducing noise in clustering is equivalent to performing a simulation with volume larger by a factor of 5 and 4 for LRGs and ELGs, respectively. We also mitigate the standard deviation of the LRG bispectrum with the triangular configurations h/Mpc by a factor of 1.6. With smaller sample variance on galaxy clustering, we are able to constrain the baryon acoustic oscillations (BAO) scale parameters to higher precision. The CARPool method will be beneficial to better constrain the theoretical systematics of BAO, redshift space distortions (RSD) and primordial non-Gaussianity (NG).
Keywords
Cite
@article{arxiv.2404.03117,
title = {Suppressing the sample variance of DESI-like galaxy clustering with fast simulations},
author = {Z. Ding and A. Variu and S. Alam and Y. Yu and C. Chuang and E. Paillas and C. Garcia-Quintero and X. Chen and J. Mena-Fernández and J. Aguilar and S. Ahlen and D. Brooks and T. Claybaugh and A. de la Macorra and P. Doel and K. Fanning and J. E. Forero-Romero and E. Gaztañaga and S. Gontcho A Gontcho and G. Gutierrez and C. Hahn and K. Honscheid and C. Howlett and S. Juneau and R. Kehoe and T. Kisner and A. Kremin and A. Lambert and M. Landriau and L. Le Guillou and M. Manera and R. Miquel and E. Mueller and A. D. Myers and J. Nie and G. Niz and C. Poppett and M. Rezaie and G. Rossi and E. Sanchez and M. Schubnell and H. Seo and J. Silber and D. Sprayberry and G. Tarlé and M. Vargas-Magaña and H. Zou},
journal= {arXiv preprint arXiv:2404.03117},
year = {2025}
}
Comments
37 pages, 15 figures, 3 tables, match to the accepted draft with the updated references