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The bending of light ray and unphysical solutions in general relativity

机译:广义相对论中的光线弯曲和非物理解

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In general relativity, according to Einstein, a gauge is related to the time dilation and the space contractions,and thus a physically realizable gauge should be unique for a given frame of reference. Since more than one metric solution for the same frame can produce the same deflection angle, this means that an invalid space-time metric can produce the correct deflection angle for a light ray. To demonstrate this with an unambiguous example, we consider a new extreme case that there is no space contraction in the radius direction while the conditions of asymptotic flatness and the requirement for gravitational red shifts are satisfied. This solution has a distinct characteristic of "space expansion" in the other directions. Nevertheless, it turns out that, in spite of requiring far more subtle calculations, the resulting deflection angle of a light ray is the same. An interesting property of this new solution is that its event horizon corresponds to an arbitrary integral constant. Thus, this calculation demonstrates beyond doubt that an unphysical solution can produce the correct first-order approximation of light bending. This makes it clear that there is a main difference between local effects such as the gravitational red shifts and the local light speeds, which are not gauge invariant, and integrated effects such as the bending of light, which can be (restricted) gauge invariant.
机译:在广义相对论中,根据爱因斯坦的说法,量规与时间膨胀和空间收缩有关,因此,对于给定的参考系,可物理实现的量规应该是唯一的。由于同一帧的多个度量解决方案可以产生相同的偏转角,所以这意味着无效的时空度量可以为光线产生正确的偏转角。为了用一个明确的例子证明这一点,我们考虑了一个新的极端情况,即在满足渐近平坦度和引力红移的条件下,半径方向上没有空间收缩。该解决方案在其他方向上具有“空间扩展”的明显特征。然而,事实证明,尽管需要进行更多的细微计算,但最终的光线偏转角却是相同的。此新解决方案的一个有趣特性是,其事件范围对应于任意整数常数。因此,这一计算无疑证明了非物理的解决方案可以产生光弯曲的正确的一阶近似值。这清楚地表明,局部效应(例如引力红移和局部光速)之间不是主要的尺度差异,而局部效应不是规范的(标准)不变,而综合效应(例如光的弯曲)则可以(受限制的)规范不变。

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