preprint Open access

Analytical Gaussian Process Cosmography: Unveiling Insights into Matter-Energy Density Parameter at Present

  • arXiv (Cornell University)
  • Cornell University
Research footprint

At a glance

Citations
1
References
85
Comments
0
Paper overview

Öz

In this study, we introduce a novel analytical Gaussian Process (GP) cosmography methodology, leveraging the differentiable properties of GPs to derive key cosmological quantities analytically. Our approach combines cosmic chronometer (CC) Hubble parameter data with growth rate (f) observations to constrain the $Ω_{\rm m0}$ parameter, offering insights into the underlying dynamics of the Universe. By formulating a consistency relation independent of specific cosmological models, we analyze under a flat FLRW metric and first-order Newtonian perturbation theory framework. Our analytical approach simplifies the process of Gaussian Process regression (GPR), providing a more efficient means of handling large datasets while offering deeper interpretability of results. We demonstrate the effectiveness of our methodology by deriving precise constraints on $Ω_{\rm m0}h^2$, revealing $Ω_{\rm m0}h^2=0.139\pm0.017$. Moreover, leveraging $H_0$ observations, we further constrain $Ω_{\rm m0}$, uncovering an inverse correlation between mean $H_0$ and $Ω_{\rm m0}$. Our investigation offers a proof of concept for analytical GP cosmography, highlighting the advantages of analytical methods in cosmological parameter estimation.

Record transparency

Publication details

DOI
10.48550/arxiv.2311.13498
OpenAlex
W4388963796
Document type
preprint
Language
EN
Source
arXiv (Cornell University)
Last metadata update
Community

Comments

Oturum Açın to join the discussion.

  1. No comments yet. Start the discussion.