Anisotropic bulk viscous string cosmological models of the Universe under a time-dependent deceleration parameter
Abstract
We investigate a new class of LRS Bianchi type-II cosmological models by revisiting in the paper of Mishra {\it et al} (2013) by considering a new deceleration parameter (DP) depending on the time in string cosmology for the modified gravity theory suggested by Sez \& Ballester (1986). We have considered the energy-momentum tensor proposed by Leteliar (1983) for bulk viscous and perfect fluid under some assumptions. To make our models consistent with recent astronomical observations, we have used scale factor (Sharma {\it et al} 2018; Garg {\it et al} 2019) , where and are positive constants and it provides a time-varying DP. By using the recent constraints (, and ) from SN Ia data in combination with BAO and CMB observations (Giostri {\it et al}, arXiv:1203.3213v2[astro-ph.CO]), we affirm and . For these constraints, we have substantiated a new class of cosmological transit models for which the expansion takes place from early decelerated phase to the current accelerated phase. Also, we have studied some physical, kinematic and geometric behavior of the models, and have found them consistent with observations and well established theoretical results . We have also compared our present results with those of Mishra {\it et al} (2013) and observed that the results in this paper are much better, stable under perturbation and in good agreement with cosmological reflections.
Keywords
Cite
@article{arxiv.1906.05715,
title = {Anisotropic bulk viscous string cosmological models of the Universe under a time-dependent deceleration parameter},
author = {Archana Dixit and Rashid Zia and Anirudh Pradhan},
journal= {arXiv preprint arXiv:1906.05715},
year = {2021}
}
Comments
18 pages, 13 figures, original research paper