English

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)f\sigma_8(z). Parameters for FLRW universe consist (Ω0(b),Ω0(cd),Ω0(k),H0,γ,σ8)\left(\Omega^{\text{(b)}}_0, \Omega^{\text{(cd)}}_0, \Omega^{\text{(k)}}_0, H_0, \gamma, \sigma_8\right), while for the Bianchi model are (Ω0(b),Ω0(cd),Ω0(β),H0,γ,Ω0(θ),σ8)\left(\Omega^{\text{(b)}}_0, \Omega^{\text{(cd)}}_0, \Omega^{{(\beta)}}_0, H_0, \gamma, \Omega^{(\theta)}_0, \sigma_8\right). We determine the best values for cosmological parameters. For the FLRW model, these values depend on the sign of γ\gamma: γ>0\gamma > 0 yields γ=0.000080.00011+0.00015\gamma =0.00008^{+0.00015}_{-0.00011}, and Ω0(k)=0.0140.022+0.024\Omega^{\text{(k)}}_0=0.014^{+0.024}_{-0.022} and γ<0\gamma < 0 leads to γ=0.02260.0062+0.0054\gamma =-0.0226^{+0.0054}_{-0.0062}, and Ω0(k)=0.0230.041+0.039\Omega^{\text{(k)}}_0=0.023^{+0.039}_{-0.041}. In both cases Ω0(k)>0\Omega^{\text{(k)}}_0>0 represents a closed universe. Similarly, for the Bianchi type-V brane model, the parameter values vary with the sign of γ\gamma, resulting in γ=0.000840.00021+0.00019\gamma = 0.00084^{+0.00019}_{-0.00021}, Ω0(β)=0.02580.0063+0.0052\Omega^{(\beta)}_0 =0.0258^{+0.0052}_{-0.0063} , and Ω0θ(×105)=4.190.75+0.67\Omega^{\theta}_0(\times 10^{-5} ) = 4.19^{+0.67}_{-0.75} (as with the density parameter of stiff matter) for γ>0\gamma > 0, and γ=0.001070.00020+0.00019\gamma = -0.00107^{+0.00019}_{-0.00020}, Ω0(β)=0.02590.0062+0.0050\Omega^{(\beta)}_0 = 0.0259^{+0.0050}_{-0.0062} , and Ω0θ(×105)=4.170.98+0.91\Omega^{\theta}_0(\times 10^{-5} ) = 4.17^{+0.91}_{-0.98} for γ<0\gamma < 0. In both cases Ω0(β)>0\Omega^{(\beta)}_0>0, which represents the Bianchi type-V, because in the Bianchi type-I, β=0\beta=0. Utilizing these obtained best values, we analyze the behavior of key cosmological parameters.

Keywords

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