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Wide angle effects for peculiar velocities

The line-of-sight peculiar velocities of galaxies contribute to their observed redshifts, breaking the translational invariance of galaxy clustering down to a rotational invariance around the observer. This becomes important when the line-of-sight direction varies significantly across a survey, lead...

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Detalles Bibliográficos
Autores principales: Castorina, Emanuele, White, Martin
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1093/mnras/staa2129
http://cds.cern.ch/record/2702260
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author Castorina, Emanuele
White, Martin
author_facet Castorina, Emanuele
White, Martin
author_sort Castorina, Emanuele
collection CERN
description The line-of-sight peculiar velocities of galaxies contribute to their observed redshifts, breaking the translational invariance of galaxy clustering down to a rotational invariance around the observer. This becomes important when the line-of-sight direction varies significantly across a survey, leading to what are known as ‘wide-angle’ effects in redshift-space distortions. Wide-angle effects will also be present in measurements of the momentum field, i.e. the galaxy density-weighted velocity field, in upcoming peculiar velocity surveys. In this work, we study how wide-angle effects modify the predicted correlation function and power spectrum for momentum statistics, both in autocorrelation and in cross-correlation with the density field. Using both linear theory and the Zel'dovich approximation, we find that deviations from the plane-parallel limit are large and could become important in data analysis for low-redshift surveys. We point out that even multipoles in the cross-correlation between density and momentum are non-zero regardless of the choice of line of sight, and therefore contain new cosmological information that could be exploited. We discuss configuration space, Fourier space, and spherical analyses; providing exact expressions in each case rather than relying on an expansion in small angles. We hope these expressions will be of use in the analysis of upcoming surveys for redshift-space distortions and peculiar velocities.
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institution Organización Europea para la Investigación Nuclear
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spelling cern-27022602023-03-04T03:30:42Zdoi:10.1093/mnras/staa2129http://cds.cern.ch/record/2702260engCastorina, EmanueleWhite, MartinWide angle effects for peculiar velocitiesastro-ph.COAstrophysics and AstronomyThe line-of-sight peculiar velocities of galaxies contribute to their observed redshifts, breaking the translational invariance of galaxy clustering down to a rotational invariance around the observer. This becomes important when the line-of-sight direction varies significantly across a survey, leading to what are known as ‘wide-angle’ effects in redshift-space distortions. Wide-angle effects will also be present in measurements of the momentum field, i.e. the galaxy density-weighted velocity field, in upcoming peculiar velocity surveys. In this work, we study how wide-angle effects modify the predicted correlation function and power spectrum for momentum statistics, both in autocorrelation and in cross-correlation with the density field. Using both linear theory and the Zel'dovich approximation, we find that deviations from the plane-parallel limit are large and could become important in data analysis for low-redshift surveys. We point out that even multipoles in the cross-correlation between density and momentum are non-zero regardless of the choice of line of sight, and therefore contain new cosmological information that could be exploited. We discuss configuration space, Fourier space, and spherical analyses; providing exact expressions in each case rather than relying on an expansion in small angles. We hope these expressions will be of use in the analysis of upcoming surveys for redshift-space distortions and peculiar velocities.The line-of-sight peculiar velocities of galaxies contribute to their observed redshifts, breaking the translational invariance of galaxy clustering down to a rotational invariance around the observer. This becomes important when the line-of-sight direction varies significantly across a survey, leading to what are known as `wide angle' effects in redshift space distortions. Wide-angle effects will also be present in measurements of the momentum field, i.e. the galaxy density-weighted velocity field, in upcoming peculiar velocity surveys. In this work we study how wide-angle effects modify the predicted correlation function and power spectrum for momentum statistics, both in auto-correlation and in cross-correlation with the density field. Using both linear theory and the Zeldovich approximation, we find that deviations from the plane-parallel limit are large and could become important in data analysis for low redshift surveys. We point out that even multipoles in the cross-correlation between density and momentum are non-zero regardless of the choice of line of sight, and therefore contain new cosmological information that could be exploited. We discuss configuration-space, Fourier-space and spherical analyses, providing exact expressions in each case rather than relying on an expansion in small angles. We hope these expressions will be of use in the analysis of upcoming surveys for redshift-space distortions and peculiar velocities.arXiv:1911.08353CERN-TH-2019-191oai:cds.cern.ch:27022602019-11-19
spellingShingle astro-ph.CO
Astrophysics and Astronomy
Castorina, Emanuele
White, Martin
Wide angle effects for peculiar velocities
title Wide angle effects for peculiar velocities
title_full Wide angle effects for peculiar velocities
title_fullStr Wide angle effects for peculiar velocities
title_full_unstemmed Wide angle effects for peculiar velocities
title_short Wide angle effects for peculiar velocities
title_sort wide angle effects for peculiar velocities
topic astro-ph.CO
Astrophysics and Astronomy
url https://dx.doi.org/10.1093/mnras/staa2129
http://cds.cern.ch/record/2702260
work_keys_str_mv AT castorinaemanuele wideangleeffectsforpeculiarvelocities
AT whitemartin wideangleeffectsforpeculiarvelocities