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Article

Exact Solutions and Cosmological Constraints in Fractional Cosmology

by
Esteban González
1,
Genly Leon
2,3,* and
Guillermo Fernandez-Anaya
4
1
Dirección de Investigación y Postgrado, Universidad de Aconcagua, Pedro de Villagra 2265, Vitacura, Santiago 7630367, Chile
2
Departamento de Matemáticas, Universidad Católica del Norte, Avda. Angamos 0610, Casilla 1280, Antofagasta 1270709, Chile
3
Institute of Systems Science, Durban University of Technology, P.O. Box 1334, Durban 4000, South Africa
4
Departamento de Física y Matemáticas, Universidad Iberoamericana Ciudad de México, Prolongación Paseo de la Reforma 880, Mexico City 01219, Mexico
*
Author to whom correspondence should be addressed.
Fractal Fract. 2023, 7(5), 368; https://doi.org/10.3390/fractalfract7050368
Submission received: 29 March 2023 / Revised: 20 April 2023 / Accepted: 26 April 2023 / Published: 29 April 2023
(This article belongs to the Special Issue Fractional Gravity/Cosmology in Classical and Quantum Regimes)

Abstract

This paper investigates exact solutions of cosmological interest in fractional cosmology. Given μ, the order of Caputo’s fractional derivative, and w, the matter equation of state, we present specific exact power-law solutions. We discuss the exact general solution of the Riccati Equation, where the solution for the scale factor is a combination of power laws. Using cosmological data, we estimate the free parameters. An analysis of type Ia supernovae (SNe Ia) data and the observational Hubble parameter data (OHD), also known as cosmic chronometers, and a joint analysis with data from SNe Ia + OHD leads to best-fit values for the free parameters calculated at 1σ, 2σ and 3σ confidence levels (CLs). On the other hand, these best-fit values are used to calculate the age of the Universe, the current deceleration parameter (both at 3σ CL) and the current matter density parameter at 1σ CL. Finding a Universe roughly twice as old as the one of ΛCDM is a distinction of fractional cosmology. Focusing our analysis on these results, we can conclude that the region in which μ>2 is not ruled out by observations. This parameter region is relevant because fractional cosmology gives a power-law solution without matter, which is accelerated for μ>2. We present a fractional origin model that leads to an accelerated state without appealing to Λ or dark energy.
Keywords: fractional calculus; cosmological data; cosmology fractional calculus; cosmological data; cosmology

Share and Cite

MDPI and ACS Style

González, E.; Leon, G.; Fernandez-Anaya, G. Exact Solutions and Cosmological Constraints in Fractional Cosmology. Fractal Fract. 2023, 7, 368. https://doi.org/10.3390/fractalfract7050368

AMA Style

González E, Leon G, Fernandez-Anaya G. Exact Solutions and Cosmological Constraints in Fractional Cosmology. Fractal and Fractional. 2023; 7(5):368. https://doi.org/10.3390/fractalfract7050368

Chicago/Turabian Style

González, Esteban, Genly Leon, and Guillermo Fernandez-Anaya. 2023. "Exact Solutions and Cosmological Constraints in Fractional Cosmology" Fractal and Fractional 7, no. 5: 368. https://doi.org/10.3390/fractalfract7050368

APA Style

González, E., Leon, G., & Fernandez-Anaya, G. (2023). Exact Solutions and Cosmological Constraints in Fractional Cosmology. Fractal and Fractional, 7(5), 368. https://doi.org/10.3390/fractalfract7050368

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