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Anisotropic Bianchi Type-II Massive String Cosmological Models with Time-Decaying Λ Term and Thermodynamic Parameters

机译:具有时间衰减Λ项和热力学参数的各向异性Bianchi II型大规模弦宇宙论模型

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摘要

The present paper envisages a spatially homogeneous and anisotropic Bianchi II massive string cosmological models with time-decaying Λ term in general relativity. By using the variation law of Hubble's parameter, the Einstein's field equations have been solved for two general cases. The first case involving a power law solution describes the dynamics of universe from big bang to present epoch while the second case admit an exponential solution seems reasonable to project dynamics of future universe. We observed that massive strings dominate in early universe and eventually disappear at late time, which is consistent with the current astronomical observations. It has been found that the cosmological constant (Λ) is a decreasing function of time and it approaches to small positive value at sufficiently large time. The thermodynamic properties of anisotropic Bianchi II universe are studied and also the absolute temperature and entropy distribution are given explicitly. The relations between thermodynamic parameters and cosmological constant Λ has been established. Physical behavior of the derived model is elaborated in detail.
机译:本文设想了广义相对论中具有时间衰减Λ项的空间均匀且各向异性的Bianchi II大规模弦宇宙论模型。通过使用哈勃参数的变化定律,已经针对两种一般情况求解了爱因斯坦的场方程。第一种情况涉及幂定律解,它描述了从大爆炸到现在纪元的宇宙动力学,而第二种情况则承认指数解对于预测未来宇宙的动力学似乎是合理的。我们观察到巨大的弦在宇宙早期占主导地位,并最终在晚期消失,这与当前的天文学观测相一致。已经发现,宇宙常数(Λ)是时间的递减函数,并且在足够大的时间它接近小的正值。研究了各向异性Bianchi II宇宙的热力学性质,并明确给出了绝对温度和熵分布。已经建立了热力学参数和宇宙常数Λ之间的关系。详细阐述了导出模型的物理行为。

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