Three-dimensional simultaneous arbitrary-way orbital angular momentum generator for future communication applications

Chen Zhang, L. Deng, W. Hong, Shu Fang Li
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Abstract

In this work, a three-dimensional (3D) simultaneous arbitrary-way orbital angular momentum (OAM) generator is presented. The proposed generator is constructed by a group of transformation cylinders filled with metamaterials. Using transformation cylinders, arbitrary-way planar wave fronts can be simultaneously converted to helical wave fronts with arbitrary topological charges. Firstly, the principle of orbital angular momentum is introduced. Then, a designing method of metamaterials based on transformation optics is interpreted to construct a 3D simultaneous arbitrary-way OAM generator with different topological charges. At last, the simulations on electric field and phase of output beams are performed, which validate the function of this design. The results show that arbitrary-way beams carrying OAM with specific topological charges can be obtained simultaneous by the proposed device.
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用于未来通信应用的三维同步任意路径轨道角动量发生器
本文提出了一种三维同步任意路径轨道角动量(OAM)发生器。所提出的发电机由一组充满超材料的变换圆柱体构成。利用变换柱面,任意方向的平面波阵面可以同时转换为具有任意拓扑电荷的螺旋波阵面。首先,介绍了轨道角动量的原理。然后,阐述了一种基于变换光学的超材料设计方法,构建了具有不同拓扑电荷的三维同步任意路径OAM发生器。最后对输出光束的电场和相位进行了仿真,验证了该设计的功能。结果表明,该装置可同时获得携带特定拓扑电荷的任意路OAM光束。
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