paper

Comparative Study of Early-Universe Epochs in an Gravity Model with Effective Curvature--Matter Interaction and CDM Cosmology

arXiv:2507.10101

Abstract

We investigate a specific gravity model of the form , where the nonlinear dependence on the matter Lagrangian introduces an effective curvature-matter interaction, leading to the non-conservation of the energy-momentum tensor. Using distance modulus data, we constrain the parameters through minimization and Bayesian MCMC analysis, obtaining statistically robust best-fit values: , , and . This study presents a comprehensive and statistically rigorous comparison of three key early-Universe epochs: structure formation, recombination, and matter-radiation equality between the model and the standard CDM cosmology. The model predicts an earlier onset of nonlinear structure formation () and a higher matter-radiation equality redshift () compared to CDM (), while maintaining consistency with the observed recombination redshift (). The recombination visibility function, derived using standard microphysical expressions with the modified expansion history, exhibits a slightly broader full width at half maximum, suggesting an extended photon decoupling period.

27 pages, 7 figures