Testing Scale-Dependent Suppression of Structure Growth in the Linear Regime

arXiv:2608.02175 · astro-ph.CO · Submitted 2026-08-03 · Read on arXiv

Fernanda Oliveira, Miguel A. Sabogal, Felipe Avila, Rafael C. Nunes, Armando Bernui

astro-ph.CO

Submitted: 2026-08-03

Comments: 10 pages, 2 figures

DOI: 10.1016/j.dark.2026.102410

Code: https://github.com/cmbant/getdist

License: http://creativecommons.org/licenses/by/4.0/

The gist: We investigate recent reports of a suppression in the growth rate of cosmic structures inferred from analyses of the [f sigma 8](z) dataset.

Terminology

Abstract

We investigate recent reports of a suppression in the growth rate of cosmic structures inferred from analyses of the [f sigma 8](z) dataset. To address this issue, we explore the hypothesis that the evolution of matter clustering is more accurately described within the framework of scale-dependent modified gravity. We perform a joint analysis of [f sigma 8](z), cosmic chronometer H(z) measurements, luminosity distance data, and CMB observations using Markov Chain Monte Carlo techniques to constrain the parameters of a scale-dependent cosmological model and investigate its impact on the evolution of [f sigma 8](z). Our results indicate that the suppression of the growth rate of large-scale structures is more pronounced during the matter-dominated era than in the dark-energy-dominated epoch. We find evidence for scale-dependent growth at a statistical significance of 2.2, sigma. In addition, we constrain the S 8 parameter and find it to be consistent with the value inferred from the CMB observations of the Planck Collaboration. Overall, our analysis shows that k-dependent growth models provide a viable explanation for the observed clustering of matter without exacerbating the current cosmological tensions.

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