Reconstruction of cosmological models are inspired by generalization of the Chaplygin gas

IF 0.3 Q4 PHYSICS, MULTIDISCIPLINARY
P. Tsyba, O. Razina, N. Suikimbayeva
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引用次数: 0

Abstract

This paper considers models arising from the composition of the modified Gauss–Bonnet gravity (the Gauss– Bonnet invariant) and the general relativity (the Ricci scalar) against the background of a flat, homogeneous, and isotropic space-time described by the Friedmann–Robertson–Walker metric. Advantages arising from applying a theory containing higher-order invariants (Gauss–Bonnet invariant) consist in the presence of additional degrees of freedom, which makes it possible to study the influence of small-order effects on the dynamics of the system under study, which are in search and confirmed by cosmological observational data. We reconstructed two models with a power-law and exponential dependence on the Gauss–Bonnet invariant, where the model ansatz is a combination of the inverse Weierstrass elliptic function and the power-law function describing the Hubble parameter. This facilitates obtaining a quasi-Dieter law of the change of the scale factor in the initial and late epochs of the Universe. The application of the special function is inspired by generalization equation of state of the Chaplygin gas type, the Weierstrass gas. The application of the equation of state with such dependence makes allows obtaining a quasi-periodic universe. The equations of state are based on the Chaplygin gas are model equations of state and describe well the evolution of both the early and the modern universe. The obtained two particular models are investigated for the fulfillment of the energy conditions, which makes it possible to carry out analysis at a late stage of evolution of the universe and using perturbation theory covering the period of the early universe. For the power-law and exponential models, the perturbations of the Hubble parameter decrease in a finite time are shown, providing a way out of the inflationary stage of evolution of the universe.
宇宙学模型的重建受到了Chaplygin气体推广的启发
本文考虑了在Friedmann–Robertson–Walker度量描述的平坦、均匀和各向同性时空背景下,由修正的高斯-博内特引力(高斯-博内不变量)和广义相对论(Ricci标量)组成的模型。应用包含高阶不变量(Gauss–Bonnet不变量)的理论的优势在于存在额外的自由度,这使得研究小阶效应对所研究系统动力学的影响成为可能,这一点正在寻找中,并得到宇宙学观测数据的证实。我们重建了两个具有幂律和高斯-博内特不变量指数依赖性的模型,其中模型模拟是描述哈勃参数的逆Weierstrass椭圆函数和幂律函数的组合。这有助于获得宇宙初始和晚期尺度因子变化的准迪特定律。特殊函数的应用受到Chaplygin气体类型Weierstrass气体的广义状态方程的启发。具有这种依赖性的状态方程的应用使得可以获得准周期宇宙。这些状态方程以Chaplygin气体为基础,是模型状态方程,很好地描述了早期和现代宇宙的演化。为了满足能量条件,对所获得的两个特定模型进行了研究,这使得在宇宙演化的后期进行分析和使用涵盖早期宇宙时期的微扰理论成为可能。对于幂律和指数模型,哈勃参数的扰动在有限时间内减少,为走出宇宙演化的膨胀阶段提供了一条途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
自引率
50.00%
发文量
32
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