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Interacting dark energy: Dynamical system analysis

机译:互动暗能:动态系统分析

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摘要

We investigate the impacts of interaction between dark matter (DM) and dark energy (DE) in the context of two DE models, holographic (HDE) and ghost dark energy (GDE). In fact, using the dynamical system analysis, we obtain the cosmological consequence of several interactions, considering all relevant component of universe, i.e. matter (dark and luminous), radiation and DE. Studying the phase space for all interactions in detail, we show the existence of unstable matter-dominated and stable DE-dominated phases. We also show that linear interactions suffer from the absence of standard radiation-dominated epoch. Interestingly, this failure resolved by adding the nonlinear interactions to the models. We find an upper bound for the value of the coupling constant of the interaction between DM and DE as b < 0.57 in the case of holographic model, and b < 0.61 in the case of GDE model, to result in a cosmological viable matter-dominated epoch. More specifically, this bound is vital to satisfy instability and deceleration of matter-dominated epoch.
机译:我们调查在两种模型,全息(HDE)和鬼暗能量(GDE)的上下文中的暗物质(DM)和暗能量(DE)之间的相互作用的影响。事实上,使用动态系统分析,我们获得了几种相互作用的宇宙学结果,考虑到宇宙的所有相关组成部分,即物质(黑暗和发光),辐射和de。详细研究所有相互作用的相位空间,我们展示了不稳定的物质主导和稳定的解压制阶段的存在。我们还表明,线性相互作用缺乏缺乏标准的辐射主导的时期。有趣的是,这种失败通过将非线性交互添加到模型来解决。在全息模型的情况下,我们发现DM和DE之间的相互作用耦合常数的值的上限,并且在GDE模型的情况下,B <0.61,导致宇宙学活性占主导地位时代。更具体地,这一界限对于满足物质主导的时期的不稳定性和减速至关重要。

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