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用于操控聚焦三叶形和五叶形矢量光场的超表面空间复用

Spatially Multiplexing of Metasurface for Manipulating the Focused Trefoil and Cinquefoil Vector Light Field.

作者信息

Sun Rui, Cheng Chuanfu, Zhang Ruirui, Zeng Xiangyu, Zhang Yu, Gu Manna, Liu Chunxiang, Ma Hong, Kong Qian, Cheng Chen

机构信息

College of Physics and Electronics, Shandong Normal University, Jinan 250014, China.

出版信息

Nanomaterials (Basel). 2021 Mar 27;11(4):858. doi: 10.3390/nano11040858.

Abstract

The trefoil and cinquefoil vector field are of essential significance for fundamental topology properties as the Hopf link and trefoil knots in the light field. The spatially multiplexing metasurfaces were designed with two sets of periodical nanoslits arranged alternately, each had independent geometric spiral phases and metalens phases to produce and focus vortex of the corresponding circular polarized (CP) light. By arranging the orientations of the two slit sets, the two CP vortices of the desired topological charges were obtained, the superposition of the vortices were realized to generate the vector field. With the topological charges of the vortices set to one and two, and three and two, respectively, the focused trefoil and cinquefoil vector light fields were acquired. The work would be important in broadening the applications of metasurface in areas as vector beam generations and topology of light field.

摘要

三叶形和五叶形矢量场对于基本拓扑性质具有至关重要的意义,就像光场中的霍普夫链环和三叶结一样。空间复用超表面由两组交替排列的周期性纳米狭缝设计而成,每组都有独立的几何螺旋相位和超透镜相位,以产生并聚焦相应圆偏振(CP)光的涡旋。通过排列两组狭缝的方向,获得了具有所需拓扑电荷的两个CP涡旋,实现了涡旋的叠加以产生矢量场。将涡旋的拓扑电荷分别设置为1和2以及3和2,获得了聚焦的三叶形和五叶形矢量光场。这项工作对于拓宽超表面在矢量光束产生和光场拓扑等领域的应用将具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa0a/8066709/29227367e681/nanomaterials-11-00858-g001.jpg

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