论亚伯拉罕-闵可夫斯基问题,从形式和实验两方面

I. Brevik, M. Chaichian, Ion I. Cotùaescu
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引用次数: 1

摘要

我们从两个不同的角度分析了经典电动力学中的亚伯拉罕-闵可夫斯基问题。首先,我们遵循一种正式的方法,意味着根据费马原理使用具有弯曲空间截面的流形,强调由此产生的光子四动量的协变和逆变分量仅与{\it Minkowski}理论相关。因此,在这种情况下,与亚伯拉罕理论没有联系。接下来,我们转向实验方面,简要介绍旧的和新的辐射压力实验,这些实验清楚地表明闵可夫斯基光子动量在光学条件下是如何更好的。在低频条件下,实验检测亚伯拉罕项预测的单个振荡是可能的,然而,情况却大不相同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Remarks on the Abraham–Minkowski problem, from the formal and from the experimental side
We analyze the Abraham-Minkowski problem known from classical electrodynamics from two different perspectives. First, we follow a formal approach, implying use of manifolds with curved space sections in accordance with Fermat's principle, emphasizing that the resulting covariant and contravariant components of the photon four-momentum is a property linked to the {\it Minkowski} theory only. There is thus no link to the Abraham theory in that context. Next we turn to the experimental side, giving a brief account of older and newer radiation pressure experiments that clearly show how the Minkowski photon momentum is preferable under optical conditions. Under low-frequency conditions, where experimental detection of the individual oscillations predicted by the Abraham term are possible, the picture is however quite different.
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