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Main Author: Matsubara, Takahiko
Format: Preprint
Published: 2022
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Online Access:https://arxiv.org/abs/2210.11085
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author Matsubara, Takahiko
author_facet Matsubara, Takahiko
contents In the previous paper [arXiv:2210.10435], the nonlinear perturbation theory of cosmological density field is generalized to include the tensor-valued bias of astronomical objects, such as spins and shapes of galaxies and any other tensors of arbitrary ranks which are associated with objects that we can observe. We apply this newly developed method to explicitly calculate nonlinear power spectra and correlation functions both in real space and in redshift space. Multi-dimensional integrals that appear in loop corrections are reduced to combinations of one-dimensional Hankel transforms, thanks to the spherical basis of the formalism, and the final expressions are numerically evaluated in a very short time using an algorithm of the fast Fourier transforms such as \textsc{FFTLog}. As an illustrative example, numerical evaluations of loop corrections of the power spectrum and correlation function of the rank-2 tensor field are demonstrated with a simple model of tensor bias.
format Preprint
id arxiv_https___arxiv_org_abs_2210_11085
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Integrated perturbation theory for cosmological tensor fields. II. Loop corrections
Matsubara, Takahiko
Cosmology and Nongalactic Astrophysics
In the previous paper [arXiv:2210.10435], the nonlinear perturbation theory of cosmological density field is generalized to include the tensor-valued bias of astronomical objects, such as spins and shapes of galaxies and any other tensors of arbitrary ranks which are associated with objects that we can observe. We apply this newly developed method to explicitly calculate nonlinear power spectra and correlation functions both in real space and in redshift space. Multi-dimensional integrals that appear in loop corrections are reduced to combinations of one-dimensional Hankel transforms, thanks to the spherical basis of the formalism, and the final expressions are numerically evaluated in a very short time using an algorithm of the fast Fourier transforms such as \textsc{FFTLog}. As an illustrative example, numerical evaluations of loop corrections of the power spectrum and correlation function of the rank-2 tensor field are demonstrated with a simple model of tensor bias.
title Integrated perturbation theory for cosmological tensor fields. II. Loop corrections
topic Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2210.11085