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Research PaperResearchia:202609.11016

Constraining $f(R)$ gravity and evolving dark energy via large-scale structure and phase-space trajectories

Tshepo Mathibela

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 ...

Submitted: September 11, 2026Subjects: Physics; Physics

Description / Details

We present a joint observational analysis confronting viable f(R)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 (fσ8fσ_8, ff, σ8σ_8), we place tight constraints on the model parameters governing deviations from General Relativity. For the full dataset combination, we obtain log10bHS=6.3251.138+1.216\log_{10} b_\mathrm{HS} = -6.325_{-1.138}^{+1.216} for the Hu & Sawicki model and bS=(0.8±61.0)×104b_\mathrm{S} = (0.8\pm61.0)\times10^{-4} for the Starobinsky model. Model comparison based on the Akaike Information Criterion indicates that these f(R)f(R) extensions are statistically favored over flat ΛCDMΛ\text{CDM} (ΔAIC3.99|Δ\text{AIC}| \ge 3.99) 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 (μ,γ)(μ, γ) and (μ,Σ)(μ, Σ) planes across several redshifts, establishing a novel diagnostic null-test allowing us to probe for deviations from ΛCDMΛ\text{CDM}, corresponding to the fixed point (1,1)(1,1) in both planes, using LSS observables. Should future weak-lensing and galaxy surveys provide data points with μ1<0μ-1<0 and γ1>1γ-1>1 or Σ1<0Σ-1 < 0 , 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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Date:
Sep 11, 2026
Topic:
Physics
Area:
Physics
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