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基于矢量场叠加的光学角动量推导与演化

Optical angular momentum derivation and evolution from vector field superposition.

作者信息

Fang Liang, Wang Jian

出版信息

Opt Express. 2017 Sep 18;25(19):23364-23375. doi: 10.1364/OE.25.023364.

Abstract

Optical intrinsic angular momentum can be regarded as derivation from spatial superposition of optical vector fields embodied by spinning or/and spiraling the electric-field vector. We employ vectorial formulation derivation to comprehensively study all angular momentum contents of optical vector fields in arbitrary superposition states, including the longitudinal and transverse, spin and orbital (SAM and OAM) components. As for the orthogonal superposition fields, there inherently exists spin-orbit shift from longitudinal SAM to OAM, and the whole local spin flow manifests local multiple-fold helical trajectories. Especially, both the spin-orbit shift and transverse SAM could become considerable in the non-paraxial condition. Our studies here provide an explicit insight into the derivation and evolution, intrinsic correlations and salient features of various types of angular momentum components.

摘要

光学本征角动量可被视为源于通过电场矢量的旋转或/和螺旋运动所体现的光学矢量场的空间叠加。我们采用矢量形式推导来全面研究处于任意叠加态的光学矢量场的所有角动量内容,包括纵向和横向、自旋和轨道(自旋角动量和轨道角动量)分量。对于正交叠加场,从纵向自旋角动量到轨道角动量存在固有的自旋 - 轨道偏移,并且整个局部自旋流表现出局部多重螺旋轨迹。特别是,在非傍轴条件下,自旋 - 轨道偏移和横向自旋角动量都可能变得相当可观。我们在此的研究为各种类型角动量分量的推导与演化、内在关联及显著特征提供了明确的见解。

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