Observational constraints on FLRW, Bianchi type I and V brane models
General Relativity and Quantum Cosmology
2024-07-23 v1 Cosmology and Nongalactic Astrophysics
Abstract
This study explores the compatibility of Covariant Extrinsic Gravity (CEG) with current cosmological observations. We employ the chi-square statistic and Markov Chain Monte Carlo (MCMC) methods to fit the FLRW and Bianchi type-I and V brane models to the latest datasets, including Hubble, Pantheon+ Supernova samples, Big Bang Nucleosynthesis (BBN), Baryon Acoustic Oscillations (BAO), and the structure growth rate, fσ8(z). Parameters for FLRW universe consist (Ω0(b),Ω0(cd),Ω0(k),H0,γ,σ8), while for the Bianchi model are (Ω0(b),Ω0(cd),Ω0(β),H0,γ,Ω0(θ),σ8). We determine the best values for cosmological parameters. For the FLRW model, these values depend on the sign of γ: γ>0 yields γ=0.00008−0.00011+0.00015, and Ω0(k)=0.014−0.022+0.024 and γ<0 leads to γ=−0.0226−0.0062+0.0054, and Ω0(k)=0.023−0.041+0.039. In both cases Ω0(k)>0 represents a closed universe. Similarly, for the Bianchi type-V brane model, the parameter values vary with the sign of γ, resulting in γ=0.00084−0.00021+0.00019, Ω0(β)=0.0258−0.0063+0.0052, and Ω0θ(×10−5)=4.19−0.75+0.67 (as with the density parameter of stiff matter) for γ>0, and γ=−0.00107−0.00020+0.00019, Ω0(β)=0.0259−0.0062+0.0050, and Ω0θ(×10−5)=4.17−0.98+0.91 for γ<0. In both cases Ω0(β)>0, which represents the Bianchi type-V, because in the Bianchi type-I, β=0. Utilizing these obtained best values, we analyze the behavior of key cosmological parameters.
Cite
@article{arxiv.2407.15565,
title = {Observational constraints on FLRW, Bianchi type I and V brane models},
author = {R. Jalalzadeh and S. Jalalzadeh and B. Malekolkalami and Z. Davari},
journal= {arXiv preprint arXiv:2407.15565},
year = {2024}
}
Comments
12 pages, 8 figures, to appear in Physics of the Dark Universe