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Addressing H0H_0 and S8S_8 tensions within f(Q)f(Q) cosmology

Published 23 May 2025 in astro-ph.CO, gr-qc, and hep-th | (2505.18264v1)

Abstract: We investigate the viability of f(Q)f(Q) gravity as an alternative framework to address the H0H_0 and S8S_8 tensions in cosmology. Focusing on three representative f(Q)f(Q) 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 H0H_0 than those predicted by Λ\LambdaCDM, offering a partial alleviation of the tension. In addition, one model satisfies the condition $G_{\mathrm{eff}} < G$ and predicts S8S_8 values consistent with weak lensing observations, making it a promising candidate for addressing the S8S_8 tension. However, these improvements are accompanied by mild internal inconsistencies between different subsets of data, which limit the overall statistical preference relative to Λ\LambdaCDM. Despite this, f(Q)f(Q) 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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