Limits on Clustering and Smooth Quintessence from the EFTofLSS
Abstract
We apply the Effective Field Theory of Large-Scale Structure (EFTofLSS) to analyze cosmological models with clustering quintessence, which allows us to consistently describe the parameter region in which the quintessence equation of state . First, we extend the description of biased tracers in redshift space to the presence of clustering quintessence, and compute the one-loop power spectrum. We solve the EFTofLSS equations using the exact time dependence, which is relevant to obtain unbiased constraints. Then, fitting the full shape of BOSS pre-reconstructed power spectrum measurements, the BOSS post-reconstruction BAO measurements, BAO measurements from 6DF/MGS and eBOSS, the Supernovae from Pantheon, and a prior from BBN, we bound the clustering quintessence equation of state parameter at C.L.. Further combining with Planck, we obtain at C.L.. We also obtain constraints on smooth quintessence, in the physical regime : combining all datasets, we get at C.L.. These results strongly support a cosmological constant.
Cite
@article{arxiv.2012.07554,
title = {Limits on Clustering and Smooth Quintessence from the EFTofLSS},
author = {Guido D'Amico and Yaniv Donath and Leonardo Senatore and Pierre Zhang},
journal= {arXiv preprint arXiv:2012.07554},
year = {2024}
}
Comments
41 pages, 10 figures. v2: minor modifications, added references, matches JCAP published version