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浸没镜上的辐射压力:对光在电介质中的动量的影响。

Radiation pressure on submerged mirrors: implications for the momentum of light in dielectric media.

作者信息

Mansuripur Masud

出版信息

Opt Express. 2007 Mar 5;15(5):2677-82. doi: 10.1364/oe.15.002677.

Abstract

Radiation pressure measurements on mirrors submerged in dielectric liquids have consistently shown an effective Minkowski momentum for the photons within the liquid. Using an exact theoretical calculation based on Maxwell's equations and the Lorentz law of force, we demonstrate that this result is a consequence of the fact that conventional mirrors impart, upon reflection, a 180 degrees phase shift to the incident beam of light. If the mirror is designed to impart a different phase, then the effective momentum will turn out to be anywhere between the two extremes of the Minkowski and Abraham momenta. Since all values in the range between these two extremes are equally likely to be found in experiments, we argue that the photon momentum inside a dielectric host has the arithmetic mean value of the Abraham and Minkowski momenta.

摘要

对浸没在介电液体中的镜子进行的辐射压力测量一直表明,液体中的光子具有有效的闵可夫斯基动量。通过基于麦克斯韦方程组和洛伦兹力定律的精确理论计算,我们证明了这一结果是由于传统镜子在反射时会使入射光束产生180度相移这一事实导致的。如果镜子被设计为产生不同的相移,那么有效动量将介于闵可夫斯基动量和亚伯拉罕动量这两个极端值之间的任何位置。由于在实验中这两个极端值之间范围内的所有值被发现的可能性是相等的,我们认为电介质主体内部的光子动量具有亚伯拉罕动量和闵可夫斯基动量的算术平均值。

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