论文标题

电荷保护,熵电流和重力

Charge Conservation, Entropy Current, and Gravitation

论文作者

Aoki, Sinya, Onogi, Tetsuya, Yokoyama, Shuichi

论文摘要

我们提出了一类新的向量场,以在通用场理论中构建一个保守的电荷,该理论的能量动量张量是协变量的。我们表明,即使没有全球对称性,也总是存在于给定的字段理论中的这样的矢量字段。我们还认为,可以用系统的熵电流来识别从(渐近)类似时间的矢量场构建的保守电流。作为一个证据,我们表明,从中定义的保守指控满足了具有适当温度定义的各向同性系统的热力学定律。我们将公式应用于几个引力系统,例如扩展的宇宙,施瓦茨柴尔德和BTZ黑洞以及引力平面波。我们确认在宇宙的任何均质和各向同性扩张下的熵密度保存,分别包含热力学的第一定律的Bekenstein-Hawking熵的精确繁殖以及分别携带的重力平面波的存在。我们还评论了简单模型中重力崩溃期间的节能。

We propose a new class of vector fields to construct a conserved charge in a general field theory whose energy momentum tensor is covariantly conserved. We show that there always exists such a vector field in a given field theory even without global symmetry. We also argue that the conserved current constructed from the (asymptotically) time-like vector field can be identified with the entropy current of the system. As a piece of evidence we show that the conserved charge defined therefrom satisfies the first law of thermodynamics for an isotropic system with a suitable definition of temperature. We apply our formulation to several gravitational systems such as the expanding universe, Schwarzschild and BTZ black holes, and gravitational plane waves. We confirm the conservation of the proposed entropy density under any homogeneous and isotropic expansion of the universe, the precise reproduction of the Bekenstein-Hawking entropy incorporating the first law of thermodynamics, and the existence of gravitational plane wave carrying no charge, respectively. We also comment on the energy conservation during gravitational collapse in simple models.

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