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Cosmological study of autonomous dynamical systems in modified Tele-Parallel gravity

机译:改进远程平行重力中自主动力系统的宇宙学研究

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摘要

.Cosmological approaches of an autonomous dynamical system studied in the framework of f(T) gravity are investigated in this paper. Our methods applied to flat Friedmann-Robertson-Walker equations in f(T) gravity, consisting in extracting dynamical systems whose time-dependence is contained in a single parameter m depending on the Hubble rate of the Universe and its second derivative order. In our attempt to investigate the autonomous aspect of the dynamical systems reconstructed in both vacuum and non-vacuum f (T) gravities, two constant values of the parameter m have been at the heart of our present analysis. In the so-called quasi-de Sitter inflationary era (m similar or equal to 0), the corresponding autonomous dynamical systems provide stable de Sitter attractors and unstable de Sitter fixed points. Especially in vacuum f(T) gravity, the approximate form of the f(T) gravities near the stable and the unstable de Sitter fixed points has been performed. The matter dominated era case (leads to unstable fixed points confirming matter dominated era or not, and stable attractor fixed point describing dark energy dominated era. Another subtlety around the stable fixed point obtained at the matter dominated case in the non-vacuum f(T) gravity is that when the dark energy dominated era is reached, at the same time, the radiation perfect fluid dominated succumbs.
机译:本文研究了在F(T)重力框架中研究的自主动力系统的态学方法。我们的方法应用于F(t)重力的平坦Friedmann-Robertson-Walker方程,其包括提取的动态系统,其时间依赖于单个参数M中包含的,这取决于宇宙的哈勃速率及其第二衍生顺序。在我们尝试调查真空和非真空F(T)重力中重建的动态系统的自主方面,参数M的两个常数值已经处于目前分析的核心。在所谓的准de温泉通胀时代(M类似或等于0)中,相应的自主动态系统提供稳定的de Sitter吸引器和不稳定的de Satter固定点。特别是在真空f(t)重力中,已经执行了稳定和不稳定的de保持点附近的F(t)重力的近似形式。此事主导的时代案例(导致不稳定的固定点确认事项主导的时代,稳定的吸引子定位点,描述了深度暗位的时代。在非真空f(T )Gravity是,当达到暗能量主导的时代时,同时,辐射完美的流体主导的屈服。

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