English

Cosmology under the fractional calculus approach

General Relativity and Quantum Cosmology 2022-10-26 v3 Cosmology and Nongalactic Astrophysics

Abstract

Fractional cosmology modifies the standard derivative to Caputo's fractional derivative of order μ\mu, generating changes in General Relativity. Friedmann equations are modified, and the evolution of the species densities depends on μ\mu and the age of the Universe tUt_U. We estimate stringent constraints on μ\mu using cosmic chronometers, Type Ia supernovae, and joint analysis. We obtain μ=2.8390.193+0.117\mu=2.839^{+0.117}_{-0.193} within the 1σ1\sigma confidence level providing a non-standard cosmic acceleration at late times; consequently, the Universe would be older than the standard estimations. Additionally, we present a stability analysis for different μ\mu values. This analysis identifies a late-time attractor corresponding to a power-law decelerated solution for μ<2\mu < 2. Moreover, a non-relativistic critical point exists for μ>1\mu > 1 and a sink for μ>2\mu > 2. This solution is a decelerated power-law if 1<μ<21 < \mu < 2 and an accelerated power-law solution if μ>2\mu > 2, consistent with the mean values obtained from the observational analysis. Therefore, for both flat FLRW and Bianchi I metrics, the modified Friedmann equations provide a late cosmic acceleration under this paradigm without introducing a dark energy component. This approach could be a new path to tackling unsolved cosmological problems.

Keywords

Cite

@article{arxiv.2207.00878,
  title  = {Cosmology under the fractional calculus approach},
  author = {Miguel A. García-Aspeitia and Guillermo Fernandez-Anaya and A. Hernández-Almada and Genly Leon and Juan Magaña},
  journal= {arXiv preprint arXiv:2207.00878},
  year   = {2022}
}

Comments

15 pages, 8 figures. Moderate revision. Matches the version accepted for publication in MNRAS

R2 v1 2026-06-24T12:12:06.530Z