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The effect of anisotropy on the thermodynamics of the interacting holographic dark energy model

机译:各向异性对互动全息暗能模型热力学的影响

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By considering a holographic model for the dark energy in an anisotropic universe, the thermodynamics of a scheme of dark matter and dark energy interaction has been investigated. The results suggest that when holographic dark energy and dark matter evolve separately, each of them remains in thermodynamic equilibrium, therefore the interaction between them may be viewed as a stable thermal fluctuation that brings a logarithmic correction to the equilibrium entropy. Also the relation between the interaction term of the dark components and this thermal fluctuation has been obtained. Additionally, for a cosmological interaction as a free function, the anisotropy effects on the generalized second law of thermodynamics have been studied. By using the latest observational data on the holographic dark energy models as the unification of dark matter and dark energy, the observational constraints have been probed. To do this, we focus on observational determinations of the Hubble expansion rate H(z). Finally, we evaluate the anisotropy effects (although low) on various topics, such as the evolution of the statefinder diagnostic, the distance modulus and the spherical collapse from the holographic dark energy model and compare them with the results of the holographic dark energy of the Friedmann-Robertson-Walker and Lambda CDM models.
机译:通过考虑各向异性宇宙中的黑能量的全息模型,研究了暗物质和暗能量相互作用方案的热力学。结果表明,当全息暗能和暗物体分开演变时,它们中的每一个保持在热力学平衡中,因此它们之间的相互作用可以被视为稳定的热波动,从而为对数校正到平衡熵而导致对数校正。还获得了暗组分的相互作用项与该热波动之间的关系。另外,对于作为自由功能的宇宙学相互作用,已经研究了对全动力学普遍的第二律法的各向异性效应。通过在全息暗能模型上使用最新的观测数据作为暗物质和暗能量的统一,已经探测了观察限制。为此,我们专注于哈勃膨胀率H(Z)的观察确定。最后,我们评估各种主题的各向异性效应(虽然低),例如StateFinder诊断的演变,距离模量和全息暗能模型的距离模量和球形塌陷,并将它们与全息暗能的结果进行比较Friedmann-Robertson-Walker和Lambda CDM车型。

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