paper

Cosmological Constraints on Gravity from Observations of Early and Late Universe

arXiv:2508.01652

Abstract

This study proposes a unified framework comprising two complementary approaches to constrain three functional forms of gravity, namely the linear, quadratic, and general power law models, by jointly utilizing early and late Universe observations. First, we impose bounds on deviations in the weak interaction freeze-out temperature, informed by the latest measurements of the primordial helium-4 mass fraction. Second, we incorporate direct Hubble parameter data, , obtained from Cosmic Chronometers in the redshift range , to trace the expansion history of the Universe. By minimizing a combined chi-square statistic across both datasets, we derive the best-fit values and confidence intervals for each model parameter. The joint analysis significantly refines the parameter constraints compared to methods based solely on Big Bang Nucleosynthesis, thereby offering a more robust test of gravity across cosmic epochs. The results support the viability of torsion-based modifications to General Relativity and provide a consistent methodology for future evaluation using upcoming observational data.

The manuscript is withdrawn to allow for a substantial revision and update of the analysis and results. A revised version will be submitted separately