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Anisotropic bianchi V cosmological model in Scale Covariant Theory of Gravitation with a time-variable deceleration parameter

机译:时变减速参数的尺度协变引力理论中的各向异性bianchi V宇宙学模型

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摘要

In this paper we solve the field equations for Scale covariant theory of gravitation which was introduced by Caunato et al. , for Bianchi V line element in the presence of perfect fluid medium. Here the deceleration parameter is considered to be time dependent which gives the average scale factor , where and are positive constants. This value of average scale factor is the key expression for solving the field equations. Using the recent observational value of and derived from BAO/CMB and H(z) data by Santos et al. (2016) , we have evaluated three different pairs of . We observe that the model represents a phase transition from early deceleration to a present accelerating phase for a particular choice of the pair . Applying some recently developed diagnostic tools like jerk parameter and statefinders, we find that the derived model is exactly in accordance with standard ΛCDM model. Along with these, many physical, geometric and kinematic properties of the model are thoroughly studied and found consistent with recent observations.
机译:在本文中,我们解决了Caunato等人介绍的引力尺度协变理论的场方程。 ,用于存在完美流体介质的Bianchi V线元。在这里,减速参数被认为是时间相关的,它给出了平均比例因子,其中和是正常数。平均比例因子的值是求解场方程的关键表达式。 Santos等人使用BAO / CMB和H(z)数据的最新观测值,并从中得出数据。 (2016),我们评估了三对不同的。我们观察到,该模型代表了从早期减速到当前加速阶段的相位过渡,这是该对的特定选择。应用一些新近开发的诊断工具,如加加速度参数和状态查找器,我们发现派生模型完全符合标准ΛCDM模型。除此之外,还对模型的许多物理,几何和运动学特性进行了深入研究,发现与最近的观察结果一致。

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