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Generalized second law of thermodynamics for FRW cosmology with logarithmic correction

机译:具有对数校正的FRW宇宙学的热力学广义第二定律

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In the previous analyses in the literature about the generalized second law (GSL) in an accelerated expanding universe the usual relation for the entropy, i.e. S = A/4G, was used for the cosmological horizon entropy. But this entropy relation may be modified due to thermal and quantum fluctuations or corrections motivated by loop quantum gravity giving rise to S = A/4+πα ln(A/4)+γ, where α and γ are some constants whose the values are still in debate in the literature. Our aim is to study the constraints that GSL puts on these parameters. Besides, we investigate the conditions that the presence of such modified terms in the entropy puts on other physical parameters the system such as the temperature of dark energy via requiring the validity of GSL. In our study we consider a spatially flat Friedman-Robertson-Walker universe and assume that it is composed of several interacting components (including dark energy). The model is investigated in the context of thermal equilibrium and non-equilibrium situations.We show that in a (super) accelerated universe the GSL is valid whenever α(<) > 0 leading to a (negative) positive contribution from logarithmic correction to the entropy. In the case of super acceleration the temperature of the dark energy is obtained to be less than or equal to the Hawking temperature.
机译:在先前关于加速膨胀宇宙中的广义第二定律(GSL)的文献分析中,通常将熵的关系即S = A / 4G用于宇宙学的水平熵。但是,由于热和量子涨落或由于环量子引力引起的校正,可能会修改此熵关系,从而导致S = A / 4 +παln(A / 4)+γ,其中α和γ是一些常数,其值为仍在文学辩论中。我们的目的是研究GSL对这些参数的约束。此外,我们通过要求GSL的有效性来研究在熵中存在此类修饰项的条件,这些条件会影响系统的其他物理参数,例如暗能量的温度。在我们的研究中,我们考虑空间上平坦的Friedman-Robertson-Walker宇宙,并假设它由几个相互作用的成分(包括暗能量)组成。在热平衡和非平衡情况下研究了该模型。我们表明,在(超)加速宇宙中,只要α(<)> 0导致对数校正对方程的(负)正贡献,GSL就有效。熵。在超加速的情况下,暗能量的温度被获得为小于或等于霍金温度。

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