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像散混合SU(2)矢量涡旋光束:迈向纵向可变偏振光学中的通用结构

Astigmatic hybrid SU(2) vector vortex beams: towards versatile structures in longitudinally variant polarized optics.

作者信息

Wang Zhaoyang, Shen Yijie, Naidoo Darryl, Fu Xing, Forbes Andrew

出版信息

Opt Express. 2021 Jan 4;29(1):315-329. doi: 10.1364/OE.414674.

Abstract

Structured light with more controllable degrees-of-freedom (DoFs) is an exciting topic with versatile applications. In contrast to conventional vector vortex beams (VVBs) with two DoFs of orbital angular momentum (OAM) and polarization, a hybrid ray-wave structure was recently proposed [Optica 7(7), 820-831 (2020)], which simultaneously manifests multiple DoFs such as ray trajectory, coherent state phase, trajectory combination, besides OAM and polarization. Here we further generalize this exotic structure as the astigmatic hybrid VVB by hatching a new DoF of astigmatic degree. Importantly, the transverse topology varies with propagation, e.g. a linearly distributed hybrid trajectory pattern can topologically evolve to a circularly polygonal star shape, where the number of singularity changes from zero to multiple in a single beam. The propagation-dependent evolution can be easily controlled by the astigmatic degree, including as a vector vortex state such that different astigmatic trajectories have different polarizations. We experimentally generate such beams from a simple laser with a special astigmatic conversion by combined spherical and cylindrical lenses, and the results agree well with our theoretical simulation. With our new structured light, the propagation-multiplexing multi-DoF patterns can be controlled in a single beam, which can largely extend related applications such as high-dimensional large-capacity optical communication, laser machining, and particle trapping.

摘要

具有更多可控自由度(DoFs)的结构光是一个令人兴奋的主题,具有广泛的应用。与具有轨道角动量(OAM)和偏振两个自由度的传统矢量涡旋光束(VVBs)不同,最近提出了一种混合射线-波结构[Optica 7(7), 820-831 (2020)],除了OAM和偏振外,它还同时表现出多个自由度,如射线轨迹、相干态相位、轨迹组合。在这里,我们通过引入像散度这一新的自由度,进一步将这种奇特结构推广为像散混合VVB。重要的是,横向拓扑结构随传播而变化,例如,线性分布的混合轨迹图案可以拓扑演化为圆形多边形星状,其中单个光束中的奇点数量从零变为多个。传播相关的演化可以通过像散度轻松控制,包括作为矢量涡旋状态,使得不同的像散轨迹具有不同的偏振。我们通过组合球面透镜和柱面透镜,利用具有特殊像散转换的简单激光器实验生成了这种光束,结果与我们的理论模拟吻合良好。利用我们的新型结构光,可以在单个光束中控制传播复用的多自由度图案,这可以极大地扩展相关应用,如高维大容量光通信、激光加工和粒子捕获。

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