A multitracer analysis for the eBOSS galaxy sample based on the effective field theory of large-scale structure

Author:

Zhao Ruiyang123ORCID,Mu Xiaoyong12,Gsponer Rafaela3ORCID,Donald-McCann Jamie3ORCID,Feng Yonghao12,Zhang Weibing12,Wang Yuting12,Zhao Gong-Bo124,Koyama Kazuya3,Bacon David3ORCID,Crittenden Robert G3ORCID

Affiliation:

1. National Astronomical Observatories, Chinese Academy of Sciences , Beijing 100101 , P.R. China

2. School of Astronomy and Space Science, University of Chinese Academy of Sciences , Beijing 100049 , P.R. China

3. Institute of Cosmology and Gravitation, University of Portsmouth, Dennis Sciama Building , Portsmouth PO1 3FX , UK

4. Institute for Frontiers in Astronomy and Astrophysics, Beijing Normal University , Beijing 102206 , P.R. China

Abstract

ABSTRACT We perform a multitracer full-shape analysis in Fourier space based on the effective field theory of large-scale structure (EFTofLSS) using the complete Sloan Digital Sky Survey IV (SDSS-IV) extended Baryon Oscillation Spectroscopic Survey (eBOSS) DR16 luminous red galaxy (LRG) and emission line galaxy (ELG) samples. We study in detail the impact of the volume projection effect and different prior choices when doing the full-shape analysis based on the EFTofLSS model. We show that adopting a combination of Jeffreys prior and Gaussian prior can mitigate the volume effect and avoid exploring unphysical regions in the parameter space at the same time, which is crucial when jointly analysing the eBOSS LRG and ELG samples. We validate our pipeline using 1000 eBOSS EZmocks. By performing a multitracer analysis on mocks with comparable footprints, we find that cosmological constraints can be improved by $\sim 10-35~{{\ \rm per\ cent}}$ depending on whether we assume zero stochastic terms in the cross power spectrum, which breaks the degeneracy and boosts the constraints on the standard deviation of matter density fluctuation σ8. Combining with the Big Bang Nucleosynthesis (BBN) prior and fixing the spectral tilt ns to Planck value, our multitracer full-shape analysis measures H0 = 70.0 ± 2.3 km s−1Mpc−1, $\Omega _m=0.317^{+0.017}_{-0.021}$, $\sigma _8=0.787_{-0.062}^{+0.055}$, and $S_8=0.809_{-0.078}^{+0.064}$, consistent with the Planck 2018 results. In particular, the constraint on σ8 is improved beyond that obtained from the single tracer analysis by 18 per cent, or by 27 per cent when assuming zero stochastic terms in the cross power spectrum.

Funder

National Natural Science Foundation of China

Science and Technology Facilities Council

Publisher

Oxford University Press (OUP)

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