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Joule-Thomson expansion in AdS black holes with momentum relaxation

机译:动量松弛使AdS黑洞的焦耳-汤姆森展开

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The inner structure of realistic materials make them exhibit momentum relaxation. In this paper we study the Joule-Thomson effect on AdS black holes in which translational invariance is broken by two methods: First by considering planar black holes in general relativity supported by scalar fields with a linear dependence on the horizon coordinates and secondly by considering black holes in massive gravity models in which momentum relaxation is obtained by breaking the bulk diffeomorphism invariance of the theory. In contrast with black holes studied so far, for both theories it is possible to obtain inversion curves with two branches reproducing the behavior of Van der Waals fluids. Moreover in the specific case of the massive gravity model we show that black holes can heat up when crossing the inversion curve.
机译:逼真的材料的内部结构使它们表现出动量松弛。在本文中,我们研究了通过两种方法破坏平移不变性的AdS黑洞的Joule-Thomson效应:首先是考虑广义相对论中的平面黑洞,该平面黑洞由标量场支持,并且线性依赖于水平坐标,其次是考虑黑大质量重力模型中的孔,其中通过打破理论的体微分不变性获得动量松弛。与迄今为止研究的黑洞相反,对于这两种理论,都可以通过两个分支获得再现范德华流体行为的反演曲线。此外,在大规模重力模型的特定情况下,我们证明了在越过反演曲线时黑洞会变热。

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