Joint analysis of anisotropic power spectrum, bispectrum and trispectrum: application to N-body simulations
arXiv:2104.03976 · doi:10.1088/1475-7516/2021/07/008
Abstract
We perform for the first time a joint analysis of the monopole and quadrupoles for power spectrum, bispectrum and integrated trispectrum (i-trispectrum) from the redshift space matter field in N-body simulations. With a full Markov Chain Monte Carlo exploration of the posterior distribution, we quantify the constraints on cosmological parameters for an object density of , redshift , and a covariance corresponding to a survey volume of , a set up which is representative of forthcoming galaxy redshift surveys. We demonstrate the complementarity of the bispectrum and i-trispectrum in constraining key cosmological parameters. In particular, compared to the state-of-the-art power spectrum (monopole plus quadrupole) and bispectrum (monopole) analyses, we find 1D credible regions smaller by a factor of for the parameters respectively. This work motivates the additional effort necessary to include the redshift-space anisotropic signal of higher-order statistics in the analysis and interpretation of ongoing and future galaxy surveys.
42 pages (21 + appendixes and references), 12 figures, 3 tables, matching accepted version after minor revision