Testing inhomogeneous cosmography in our cosmic neighborhood using CosmicFlows-4

Fuente: arXiv
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Main Author: Koksbang, S. M.
Format: Preprint
Published: 2024
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author Koksbang, S. M.
author_facet Koksbang, S. M.
contents The convergence of the third order general cosmographic expansion of the luminosity distance is examined using several versions of a semi-realistic model of our local cosmic neighborhood, based on publicly available density and velocity fields from CosmicFlows-4. The study supports earlier findings that the general cosmographic expansion diverges at surprisingly low redshifts, often well before z = 0.1. By being based on a realistically placed observer within a data-informed cosmic environment, the results underscore that convergence must be a central concern when applying the general cosmographic expansion. By showing all-sky maps of kinematic parameters, the study also highlights the substantial information we lose when relying solely on standard FLRW-based cosmography. Poor convergence does not necessarily render the information extracted by fitting data to the general cosmographic expansion meaningless. Rather, it calls for caution in interpreting this information, particularly regarding the physical meaning of the fitting coefficients, the physical scales they probe and the implicit smoothing introduced by the fit.
format Preprint
id arxiv_https___arxiv_org_abs_2412_12637
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Testing inhomogeneous cosmography in our cosmic neighborhood using CosmicFlows-4
Koksbang, S. M.
Cosmology and Nongalactic Astrophysics
The convergence of the third order general cosmographic expansion of the luminosity distance is examined using several versions of a semi-realistic model of our local cosmic neighborhood, based on publicly available density and velocity fields from CosmicFlows-4. The study supports earlier findings that the general cosmographic expansion diverges at surprisingly low redshifts, often well before z = 0.1. By being based on a realistically placed observer within a data-informed cosmic environment, the results underscore that convergence must be a central concern when applying the general cosmographic expansion. By showing all-sky maps of kinematic parameters, the study also highlights the substantial information we lose when relying solely on standard FLRW-based cosmography. Poor convergence does not necessarily render the information extracted by fitting data to the general cosmographic expansion meaningless. Rather, it calls for caution in interpreting this information, particularly regarding the physical meaning of the fitting coefficients, the physical scales they probe and the implicit smoothing introduced by the fit.
title Testing inhomogeneous cosmography in our cosmic neighborhood using CosmicFlows-4
topic Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2412.12637