Redshift-space distortion from dynamical dark energy with time-dependent Lagrangian perturbation theory
Abstract
We apply the Lagrangian perturbation theory with time-dependent growth functions at second and third order of perturbation with the aim to model the effect of dynamical dark energy on redshift-space distortions. Our fiducial galaxy redshift surveys are modeled after the upcoming SKA and DESI redshift surveys. We include PLANCK CMB priors and the 20\% uncertainty on the linear bias parameter, incorporating the unknown instrumentation noise. After the marginalizing, our results show that the constraints on the density parameter could potentially get better than 1\%, while the constraints on and could be better than and respectively, consistent with works done before. However, the inclusion of time-dependent growth functions would alter the nonlinear power spectrum by as much as 10\%. The inclusion of the time-dependent growth functions become crucial as the precision gets better.
Keywords
Cite
@article{arxiv.1810.11838,
title = {Redshift-space distortion from dynamical dark energy with time-dependent Lagrangian perturbation theory},
author = {Chakkrit Kaeonikhom and Teeraparb Chantavat},
journal= {arXiv preprint arXiv:1810.11838},
year = {2018}
}
Comments
12 pages, 5 figures, accepted for publication in Physical Review D