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光的沃尔夫效应在任意二维旋转曲面上的推广。

Generalization of Wolf effect of light on arbitrary two-dimensional surface of revolution.

作者信息

Xu Chenni, Abbas Adeel, Wang Li-Gang

出版信息

Opt Express. 2018 Dec 10;26(25):33263-33277. doi: 10.1364/OE.26.033263.

Abstract

Investigation of physics on two-dimensional curved surface has significant meaning in study of general relativity, inasmuch as its realizability in experimental analogy and verification of faint gravitational effects in laboratory. Several phenomena about dynamics of particles and electromagnetic waves have been explored on curved surfaces. Here we consider Wolf effect, a phenomenon of spectral shift due to the fluctuating nature of light fields, on an arbitrary surface of revolution (SOR). The general expression of the propagation of partially coherent beams propagating on arbitrary SOR is derived and the corresponding evolution of light spectrum is also obtained. We investigate the extra influence of surface topology on spectral shift by defining two quantities, effective propagation distance and effective transverse distance, and compare them with longitudinal and transverse proper lengths. Spectral shift is accelerated when the defined effective quantities are greater than real proper lengths, and vice versa. We also employ some typical SORs, cylindrical surfaces, conical surfaces, SORs generated by power function and periodic peanut-shell shapes, as examples to provide concrete analyses. This work generalizes the research of Wolf effect to arbitrary SORs, and provides a universal method for analyzing properties of propagation compared with that in flat space for any SOR whose topology is known.

摘要

二维曲面上的物理研究在广义相对论研究中具有重要意义,这是因为它在实验类比中的可实现性以及在实验室中对微弱引力效应的验证。人们已经在曲面上探索了一些关于粒子动力学和电磁波的现象。在这里,我们考虑沃尔夫效应,即在任意旋转曲面(SOR)上由于光场的波动性质而产生的光谱频移现象。推导了部分相干光束在任意SOR上传播的一般表达式,并得到了相应的光谱演化。我们通过定义有效传播距离和有效横向距离这两个量来研究表面拓扑对光谱频移的额外影响,并将它们与纵向和横向固有长度进行比较。当定义的有效量大于实际固有长度时,光谱频移会加速,反之亦然。我们还以一些典型的SOR为例,如圆柱面、圆锥面、幂函数生成的SOR和周期性花生壳形状,进行具体分析。这项工作将沃尔夫效应的研究推广到任意SOR,并为分析与已知拓扑结构的任何SOR在平坦空间中的传播特性相比的传播特性提供了一种通用方法。

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