Generating reflective vortex waves in microwave region by metasurface

Haitang Yang, Junqian Niu, Kuang Zhang, Xumin Ding, Qun Wu
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Abstract

In this paper, anomalous reflection for circularly polarized (CP) waves is proposed to achieve, where the reflected waves possess orbital angular momentum (OAM) along their direction of propagation based on the Pancharatnam-Berry (geometrical) phase. Based on the phase gradient metasurface (PGM), we firstly presented a polarization-converting metasurface reflector for circularly polarized waves. On the basis of the reflector, two reflective vortex plates were designed. Under normal incidence, high-efficiency vortex waves are obtained by illuminating one vortex plate. Under oblique incidence, high-efficiency anomalous reflection of votex waves occurs for circularly polarized waves with 0° reflection angle by illuminating the other votex plate. The results of experiment and simulation are both accordant with theoretical prediction, which convincingly verifies the high-efficiency anomalous reflection of votex waves of CP waves. This technology makes a remarkable progress which is beneficial to put metasurface into practical application.
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利用超表面在微波区产生反射涡波
本文提出了圆极化(CP)波的异常反射,其中反射波沿其传播方向具有基于Pancharatnam-Berry(几何)相位的轨道角动量(OAM)。基于相位梯度超表面(PGM),首次提出了一种圆极化波的偏振转换超表面反射器。在反射器的基础上,设计了两个反射涡流板。在法向入射下,通过照射一个涡板获得高效率的涡波。斜入射下,0°反射角的圆极化波通过照射另一个涡板,产生高效的涡波异常反射。实验和仿真结果与理论预测相吻合,有力地验证了CP波对涡旋波的高效异常反射。该技术取得了显著进展,有利于超表面的实际应用。
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