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首页> 外文期刊>Physics Letters, B. Nuclear Physics and High Energy Physics >Black hole thermodynamics with the cosmological constant as independent variable: Bridge between the enthalpy and the Euclidean path integral approaches
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Black hole thermodynamics with the cosmological constant as independent variable: Bridge between the enthalpy and the Euclidean path integral approaches

机译:黑洞热力学与宇宙学常数作为独立变量:焓与欧几里德路径之间的桥梁

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Viewing the cosmological constant Lambda 0as an independent variable, we consider the thermodynamics of the Schwarzschild black hole in an anti-de Sitter (AdS) background. For this system, there is one approach which regards the enthalpy as the master thermodynamic variable and makes sense if one considers the vacuum pressure due to the cosmological constant acting in the volume inside the horizon and the outer size of the system is not restricted. From this approach a first law of thermodynamics emerges naturally. There is yet another approach based on the Euclidean action principle and its path integral that puts the black hole inside a cavity, defines a quasilocal energy at the cavity's boundary, and from which a first law of thermodynamics in a different version also emerges naturally. The first approach has affinities with critical phenomena in condensed matter physics and the second approach is an ingredient necessary for the construction of quantum gravity. The bridge between the two approaches is carried out rigorously, putting thus the enthalpic thermodynamics with Lambda as independent variable on the same footing as the quasilocal energy approach. (C) 2018 The Authors. Published by Elsevier B.V.
机译:观看宇宙恒定的λ& 0AS一个独立的变量,我们考虑一个反de Sitter(广告)背景中Schwarzschild黑洞的热力学。对于该系统,存在一种方法,这将焓视为主热力学变量,并且如果一个人认为由于在地平线内的体积中作用的宇宙学常数并且没有限制系统的外部尺寸而定义真空压力。从这种方法自然出现了一种热力学定律。还存在基于欧几里德的作用原理的另一种方法及其路径整体,使得腔内的黑洞,在腔边界处定义QuasiLocal能量,并且在不同版本中的第一热力学定律也会自然地出现。第一种方法具有在冷凝物物理学中具有关键现象的亲和力,第二种方法是对量子重力构建所需的成分。两种方法之间的桥梁被严格地进行,因此将焓热力学与Lambda作为独立变量作为Quasilocal能量方法。 (c)2018年作者。由elsevier b.v出版。

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