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ON THE PHYSICAL INTERPRETATION OF ASYMPTOTICALLY FLAT GRAVITATIONAL FIELDS

机译:关于渐近平移引力场的物理解释

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摘要

A problem in general relativity is how to extract physical information from solutions to the Einstein equations. Most often information is found from special conditions, e.g., special vector fields, symmetries or approximate symmetries. Our concern is with asymptotically flat space–times with approximate symmetry: the BMS group. For these spaces the Bondi four-momentum vector and its evolution, found at infinity, describes the total energy–momentum and the energy–momentum radiated. By generalizing the simple idea of the transformation of (electromagnetic) dipoles under a translation, we define (analogous to center of charge) the center of mass for asymptotically flat Einstein– Maxwell fields. This gives kinematical meaning to the Bondi four-momentum, i.e., the four-momentum and its evolution is described in terms of a center of mass position vector, its velocity and spin-vector. From dynamical arguments, a unique (for our approximation) total angular momentum and evolution equation in the form of a conservation law is found.
机译:广义相对论的一个问题是如何从爱因斯坦方程的解中提取物理信息。最常见的信息是从特殊条件下找到的,例如特殊向量场,对称性或近似对称性。我们关注的是渐近平坦的空间-具有近似对称性的时间:BMS组。对于这些空间,在无限远处发现的邦迪四动量矢量及其演化描述了总的能量动量和辐射的能量动量。通过概括平移下(电磁)偶极子变换的简单思想,我们定义(类似于电荷中心)渐近平坦的爱因斯坦-麦克斯韦场的质心。这赋予了邦迪四级动量,即四级动量,在运动学上的意义,其演化是根据质心位置矢量,其速度和自旋矢量来描述的。从动力学论证中,找到了一个守恒律形式的独特的(近似)总角动量和演化方程。

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