Generation of conical beam by reflective metasurface

Guowen Ding, Ke Chen, Yijun Feng
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引用次数: 3

Abstract

We use the phased-array model to theoretically analyze the conical beam-shaping. It shows that the cone angle of the conical beam can be arbitrarily controlled by just changing the initial phase excitation distribution on the array. Based on this mechanism, a passive reflective metasurface is designed to generate conical beam with certain cone angle. The metasurface element, designed based on the concept of geometric phase, is composed of two orthogonal I-shaped metallic structures etched on a back-grounded dielectric substrate. Under the normal illumination of left-circularly polarized incidence, left-circularly polarized conical wave can be obtained at 15.5 GHz with a cone angle of 13.6 degree. Simulation and measurement are carried out to validate the theoretical prediction, which show good agreement with each other.
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反射超表面产生锥形光束
利用相控阵模型对锥形波束成形进行了理论分析。结果表明,只要改变阵列上的初始相位激励分布,就可以任意控制锥形光束的锥角。在此基础上,设计了一种产生一定锥角锥形光束的被动反射超表面。超表面元件是基于几何相位概念设计的,由两个正交的i形金属结构蚀刻在背景介质衬底上。在左圆极化入射的正常照明下,可获得15.5 GHz的左圆极化圆锥波,锥角为13.6度。通过仿真和实测验证了理论预测结果,两者吻合良好。
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