Observational constraints and some toy models in $f(Q)$ gravity with bulk viscous fluid
Abstract
The standard formulation of general relativity fails to describe some recent interests in the universe. It impels us to go beyond the standard formulation of gravity. The gravity theory is an interesting modified theory of gravity, where the gravitational interaction is driven by the nonmetricity . This study aims to examine the cosmological models with the presence of bulk viscosity effect in the cosmological fluid within the framework of gravity. We construct three bulk viscous fluid models, i.e. (i) for the first model, we assuming the Lagrangian as linear dependence on , (ii) for the second model the Lagrangian as a polynomial functional form, and (iii) the Lagrangian as a logarithmic dependence on . Furthermore, we use 57 points of Hubble data and 1048 Pantheon dataset to constraint the model parameters. Then, we discuss all the energy conditions for each model, which helps us to test the self-consistency of our models. Finally, we present the profiles of the equation of state parameters to test the models' present status.
Keywords
Cite
@article{arxiv.2103.00171,
title = {Observational constraints and some toy models in $f(Q)$ gravity with bulk viscous fluid},
author = {Sanjay Mandal and Abhishek Parida and P. K. Sahoo},
journal= {arXiv preprint arXiv:2103.00171},
year = {2022}
}
Comments
Universe accepted version