Constraining $f(R)$ gravity and evolving dark energy via large-scale structure and phase-space trajectories
Abstract
We present a joint observational analysis confronting viable $f(R)$ modified gravity theories, specifically the Hu \& Sawicki and Starobinsky models, with background and large-scale structure (LSS) data. Utilizing Monte-Carlo Markov chain (MCMC) sampling across datasets including baryon acoustic oscillations (BAO), type Ia supernovae (SNeIa), cosmic microwave background (CMB) distance priors, and linear growth measurements ($fσ_8$, $f$, $σ_8$), we place tight constraints on the model parameters ...
Description / Details
We present a joint observational analysis confronting viable modified gravity theories, specifically the Hu & Sawicki and Starobinsky models, with background and large-scale structure (LSS) data. Utilizing Monte-Carlo Markov chain (MCMC) sampling across datasets including baryon acoustic oscillations (BAO), type Ia supernovae (SNeIa), cosmic microwave background (CMB) distance priors, and linear growth measurements (, , ), we place tight constraints on the model parameters governing deviations from General Relativity. For the full dataset combination, we obtain for the Hu & Sawicki model and for the Starobinsky model. Model comparison based on the Akaike Information Criterion indicates that these extensions are statistically favored over flat () for the combined data. However, when considering the Bayesian Information Criterion, the evidence for support is significantly reduced. Furthermore, we construct two-dimensional phase-space diagrams in the and planes across several redshifts, establishing a novel diagnostic null-test allowing us to probe for deviations from , corresponding to the fixed point in both planes, using LSS observables. Should future weak-lensing and galaxy surveys provide data points with and or , then the aforementioned models could be directly ruled out.
Source: arXiv:2609.10651v1 - http://arxiv.org/abs/2609.10651v1 PDF: https://arxiv.org/pdf/2609.10651v1 Original Link: http://arxiv.org/abs/2609.10651v1
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Sep 11, 2026
Physics
Physics
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