Addressing and tensions within cosmology
Abstract: We investigate the viability of gravity as an alternative framework to address the and tensions in cosmology. Focusing on three representative models, we perform a comprehensive Bayesian analysis using a combination of cosmological observations, including cosmic chronometers, Type Ia supernovae, gamma-ray bursts, baryon acoustic oscillations, and redshift-space distortions. Our results demonstrate that most of these models can yield higher values of than those predicted by CDM, offering a partial alleviation of the tension. In addition, one model satisfies the condition $G_{\mathrm{eff}} < G$ and predicts values consistent with weak lensing observations, making it a promising candidate for addressing the tension. However, these improvements are accompanied by mild internal inconsistencies between different subsets of data, which limit the overall statistical preference relative to CDM. Despite this, gravity remains a promising and flexible framework for late-time cosmology, and our results motivate further exploration of extended or hybrid models that may reconcile all observational constraints.
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