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Spin and orbital angular momentum and their conversion in cylindrical vector vortices

机译:圆柱矢量涡旋中的自旋和轨道角动量及其转换

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摘要

The generation of light beams carrying orbital angular momentum (OAM) has been greatly advanced with the emergence of the recently reported integrated optical vortex emitters. Generally, optical vortices emitted by these devices possess cylindrically symmetric states of polarization and spiral phase fronts, and they can be defined as cylindrical vector vortices (CVVs). Using the radiation of angularly arranged dipoles to model the CVVs, these beams as hybrid modes of two circularly polarized scalar vortices are theoretically demonstrated to own well-defined total angular momentum. Moreover, the effect of spin-orbit interactions of angular momentum is identified in the CVVs when the size of the emitting structure varies. This effect results in the diminishing spin component of angular momentum and purer OAM states at large structure radii.
机译:随着最近报道的集成光学涡旋发射器的出现,带有轨道角动量(OAM)的光束的产生已大大推进。通常,这些设备发射的光学涡流具有偏振和螺旋相前的圆柱对称状态,可以将它们定义为圆柱矢量涡(CVV)。使用成角度排列的偶极子的辐射来模拟CVV,这些光束作为两个圆极化标量涡的混合模式在理论上被证明具有明确定义的总角动量。此外,当发射结构的大小发生变化时,在CVV中会识别出角动量的自旋轨道相互作用的影响。这种效应导致在大结构半径下角动量的自旋分量减小,并且OAM状态更纯净。

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