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A new class of LRS Bianchi type-II dark energy models with variable EoS parameter

机译:具有可变EoS参数的新型LRS Bianchi II型暗能量模型

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摘要

A new class of dark energy models in a Locally Rotationally Symmetric Bianchi type-II (LRS B-II) space-time with variable equation of state (EoS) parameter and constant deceleration parameter have been investigated in the present paper. The Einstein's field equations have been solved by applying a variation law for generalized Hubble's parameter given by Berman: Nuovo Cimento 74:182 (1983) which generates two types of solutions for the average scale factor, one is of power-law type and other is of the exponential-law form. Using these two forms, Einstein's field equations are solved separately that correspond to expanding singular and non-singular models of the universe respectively. The dark energy EoS parameter ω is found to be time dependent and its existing range for both models is in good agreement with the three recent observations of (i) SNe Ia data (Knop et al.: Astrophys. J. 598:102 (2003)), (ii) SNe Ia data collaborated with CMBR anisotropy and galaxy clustering statistics (Tegmark et al.: Astrophys. J. 606:702 (2004)) and latest (iii) a combination of cosmological datasets coming from CMB anisotropies, luminosity distances of high redshift type Ia supernovae and galaxy clustering (Hinshaw et al.: Astrophys. J. Suppl. 180:225 (2009); Komatsu et al. Astrophys. J. Suppl. 180:330 (2009)). The cosmological constant Λ is found to be a positive decreasing function of time and it approaches a small positive value at late time (i. e. the present epoch) which is corroborated by results from recent supernovae Ia observations. The physical and geometric behaviour of the universe have also been discussed in detail.
机译:本文研究了具有状态变量(EoS)参数和恒定减速度参数的局部旋转对称Bianchi II型(LRS B-II)时空中的一类新型暗能量模型。爱因斯坦的场方程已通过应用由Berman给出的广义Hubble参数的变分定律来求解:Nuovo Cimento 74:182(1983),该方程为平均比例因子生成两种类型的解,一种是幂律型,另一种是的指数律形式。使用这两种形式,爱因斯坦的场方程分别求解,分别对应于扩展的宇宙奇异模型和非奇异模型。发现暗能量EoS参数ω与时间有关,并且两个模型的现有范围与(i)SNe Ia数据的三个最新观察结果非常吻合(Knop等人:Astrophys。J.598:102(2003 ),(ii)SNe Ia数据与CMBR各向异性和星系聚类统计数据(Tegmark等人:Astrophys。J.606:702(2004))和最新(iii)来自CMB各向异性,光度的宇宙学数据集的组合高红移Ia型超新星的距离和星系团簇(Hinshaw等人:Astrophys。J. Suppl。180:225(2009); Komatsu等人Astrophys。J. Suppl。180:330(2009))。发现宇宙常数Λ是时间的正下降函数,并且在较晚的时间(即当前时期)接近小正值,这由最近的超新星Ia观测的结果所证实。还详细讨论了宇宙的物理和几何行为。

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