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Thermodynamics of the FRW universe in rainbow gravity

机译:彩虹重力中FRW宇宙的热力学

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摘要

Rainbow gravity can be a suitable model to study the Friedmann-Robertson-Walker (FRW) universe in the realm of high energy physics. In rainbow gravity the radius of the apparent horizon is modified and it is used to derive the surface gravity and the temperature on the horizon. Inspired by the modified Friedmann equation in rainbow gravity and adopting the viewpoint that there is a deep connection between Friedmann equation and the first law of thermodynamics, the entropy on the horizon is obtained. It is interesting to be noted that the thermodynamical properties of the FRW universe depend on the energy of the probe, which is used by an observer to investigate the spacetime. Finally, it is shown that the validity of the generalized second law (GSL) of thermodynamics can be considered as a useful instrument to restrict the choice of rainbow gravity functions.
机译:彩虹重力可以是在高能物理学领域研究弗里曼 - 罗伯逊沃克(FRW)宇宙的合适模式。 在彩虹重力中,明显的地平线的半径被修改,它用于导出地平线上的表面重力和温度。 灵感来自于彩虹重力中的改进的Friedmann方程,采用Friedmann方程与热力学第一定律之间的观点来看,获得地平线的熵。 值得注意的是,FRW宇宙的热力学性质取决于探针的能量,该能量被观察者使用以研究时空。 最后,表明热力学的广义第二律(GSL)的有效性可以被认为是限制彩虹重力函数的选择的有用仪器。

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