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动态黑洞的能量守恒。

Energy conservation for dynamical black holes.

作者信息

Hayward Sean A

机构信息

Department of Physics, National Central University, Jhongli, Taoyuan 320, Taiwan.

出版信息

Phys Rev Lett. 2004 Dec 17;93(25):251101. doi: 10.1103/PhysRevLett.93.251101. Epub 2004 Dec 13.

Abstract

An energy conservation law is described, expressing the increase in mass-energy of a general black hole in terms of the energy densities of the infalling matter and gravitational radiation. This first law of black-hole dynamics describes how a black hole grows and is regular in the limit where it ceases to grow. An effective gravitational-radiation energy tensor is obtained, providing measures of both ingoing and outgoing, transverse and longitudinal gravitational radiation on and near a black hole. Corresponding energy-tensor forms of the first law involve a preferred time vector which plays the role of a stationary Killing vector. Identifying an energy flux, vanishing if and only if the horizon is null, allows a division into energy supply and work terms. The energy supply can be expressed in terms of area increase and a newly defined surface gravity, yielding a Gibbs-like equation.

摘要

描述了一个能量守恒定律,该定律根据落入物质的能量密度和引力辐射来表示一般黑洞的质能增加。这个黑洞动力学第一定律描述了黑洞如何增长以及在其停止增长的极限情况下是规则的。得到了一个有效的引力辐射能量张量,它提供了黑洞上及其附近的入射和出射、横向和纵向引力辐射的度量。第一定律的相应能量张量形式涉及一个起静态Killing向量作用的首选时间向量。确定一个能量通量,当且仅当地平线为空时该通量消失,这允许将其分为能量供应项和功项。能量供应可以根据面积增加和新定义的表面引力来表示,从而得到一个类似吉布斯的方程。

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