Late-time dynamics of dark energy EoS in symmetric teleparallel gravity

Fuente: arXiv
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Main Authors: Garg, Romanshu, Singh, G. P., Singh, Ashutosh
Format: Preprint
Published: 2024
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author Garg, Romanshu
Singh, G. P.
Singh, Ashutosh
author_facet Garg, Romanshu
Singh, G. P.
Singh, Ashutosh
contents In the symmetric teleparallel gravity framework, we study the cosmic dynamics of the universe with dark energy equation of state (EoS) parameter having non-linear forms. The non-metricity scalar induced by the dark energy EoS parameter evolves with time and, explains the physically reasonable transiting universe evolution in a consistent way. A comparative study has been presented to describe the ability of these models to fit the observational data. By using the Bayesian methods, we constrain the model parameters with the supernovae Ia (SneIa) and expansion rate data. We show that the expansion rate solutions may consistently describe the universe evolution based on cosmological indicators such as the effective EoS parameter, energy density, pressure, current age and the statefinder diagnostic. One may either have the quintom scenario or the future deceleration in these models subjected to the observational constraints.
format Preprint
id arxiv_https___arxiv_org_abs_2410_18568
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Late-time dynamics of dark energy EoS in symmetric teleparallel gravity
Garg, Romanshu
Singh, G. P.
Singh, Ashutosh
General Relativity and Quantum Cosmology
In the symmetric teleparallel gravity framework, we study the cosmic dynamics of the universe with dark energy equation of state (EoS) parameter having non-linear forms. The non-metricity scalar induced by the dark energy EoS parameter evolves with time and, explains the physically reasonable transiting universe evolution in a consistent way. A comparative study has been presented to describe the ability of these models to fit the observational data. By using the Bayesian methods, we constrain the model parameters with the supernovae Ia (SneIa) and expansion rate data. We show that the expansion rate solutions may consistently describe the universe evolution based on cosmological indicators such as the effective EoS parameter, energy density, pressure, current age and the statefinder diagnostic. One may either have the quintom scenario or the future deceleration in these models subjected to the observational constraints.
title Late-time dynamics of dark energy EoS in symmetric teleparallel gravity
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2410.18568