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September 30, 20250 citationsOpen Access

Viability of general relativity and modified gravity cosmologies using high-redshift cosmic probes

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FRFernanda Roman-OliveiraBRBruno RibeiroWHWiliam S. Hipólito-Ricaldi

Key Points

  • The study finds that including growth of structures data is essential for distinguishing between cosmological models.
  • Background observables like the Hubble parameter alone are less effective in differentiating models.
  • Models such as $F(Q)$ and the non-flat $\Lambda$CDM align well with growth rate measurements and show potential.
  • In contrast, $F(R)$ models are largely unsupported compared to the standard $\Lambda$CDM model.

Abstract

Several models based on General Relativity and Modified Gravity aim to reproduce the observed universe with precision comparable to the standard flat-CDM model. In this study, we investigate the consistency of some of these models with current high-redshift cosmic data, assessing their ability to simultaneously describe both the background expansion and matter clustering, using measurements of the Hubble parameter H (z), the luminosity distance DL (z), and the growth rate of structures f₈ (z) through parametric and non-parametric methods. Our results indicate that background observables alone offer limited capacity to distinguish between models, while the inclusion of growth of structures data proves useful in revealing deviations, even if small. An F (Q) model, the non-flat CDM and the CDM emerge as alternatives well supported by data, closely matching the growth data and showing performance comparable to CDM, as revealed by the Akaike Information Criterion. In contrast, F (R) models are strongly disfavored compared to CDM and F (Q). These analyses illustrate the usefulness of both parametric and non-parametric approaches to explore the observational viability of alternative cosmological models.

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Cite This Study

Roman-Oliveira et al. (2025) studied this question.

synapsesocial.com/papers/68dc12c58a7d58c25ebb09b1https://doi.org/10.48550/arxiv.2505.19960
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Growth Rate Analysis in $$\boldsymbol{f(R,L_{m})}$$ Gravity: A Comparative Study with $$\boldsymbol{\Lambda}$$CDM Cosmology2026
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  3. 3Constraining on the non-standard cosmological models combining the observations of high-redshift quasars and BAO2024
  4. 4Constraining on the non-standard cosmological models combining the observations of high-redshift quasars and BAO2024 · 8 citations
  5. 5The cosmology of $f(R, L_m)$ gravity: constraining the background and perturbed dynamics2024