The DESI One-Percent Survey: Constructing Galaxy–Halo Connections for ELGs and LRGs Using Auto and Cross Correlations

Author:

Gao Hongyu,Jing Y. P.ORCID,Gui Shanquan,Xu KunORCID,Zheng YunORCID,Zhao Donghai,Aguilar Jessica NicoleORCID,Ahlen StevenORCID,Brooks DavidORCID,Claybaugh Todd,Dawson KyleORCID,xde la Macorra Axel,Doel Peter,Fanning KevinORCID,Forero-Romero Jaime E.,A Gontcho Satya GontchoORCID,Guy JulienORCID,Honscheid Klaus,Kehoe RobertORCID,Landriau MartinORCID,Manera MarcORCID,Meisner AaronORCID,Miquel RamonORCID,Moustakas JohnORCID,Newman Jeffrey A.ORCID,Nie JundanORCID,Percival WillORCID,Rossi Graziano,Schubnell Michael,Seo Hee-JongORCID,Tarlé GregoryORCID,Weaver Benjamin Alan,Yu Jiaxi,Zhou ZhiminORCID

Abstract

Abstract In the current Dark Energy Spectroscopic Instrument (DESI) survey, emission line galaxies (ELGs) and luminous red galaxies (LRGs) are essential for mapping the dark matter distribution at z ∼ 1. We measure the auto and cross correlation functions of ELGs and LRGs at 0.8 < z ≤ 1.0 from the DESI One-Percent survey. Following Gao et al., we construct the galaxy–halo connections for ELGs and LRGs simultaneously. With the stellar–halo mass relation for the whole galaxy population (i.e., normal galaxies), LRGs can be selected directly by stellar mass, while ELGs can also be selected randomly based on the observed number density of each stellar mass, once the probability P sat of a satellite galaxy becoming an ELG is determined. We demonstrate that the observed small scale clustering prefers a halo mass-dependent P sat model rather than a constant. With this model, we can well reproduce the auto correlations of LRGs and the cross correlations between LRGs and ELGs at r p > 0.1 Mpc h −1. We can also reproduce the auto correlations of ELGs at r p > 0.3 Mpc h −1 (s > 1 Mpc h −1) in real (redshift) space. Although our model has only seven parameters, we show that it can be extended to higher redshifts and reproduces the observed auto correlations of ELGs in the whole range of 0.8 < z ≤ 1.6, which enables us to generate a lightcone ELG mock for DESI. With the above model, we further derive halo occupation distributions for ELGs, which can be used to produce ELG mocks in coarse simulations without resolving subhalos.

Funder

MOST ∣ National Natural Science Foundation of China

grant

111 project

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

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