波前
物理
极化(电化学)
光学
多路复用
几何相位
椭圆极化
角动量
偏振器
圆极化
电磁辐射
微波食品加热
轨道角动量复用
相位板
平面的
线极化
拓扑(电路)
斗篷
计算机科学
作者
Guanyu Shang,Y J Zhang,Hui Li,Weisong Zhao,Xiangyan Ding,Xiangyan Ding,Lei Zhu,Di Chang,Shah Nawaz Burokur,Xumin Ding,Xumin Ding
摘要
ABSTRACT Metasurfaces have been extensively explored through various multiplexing strategies as powerful platforms for electromagnetic wave manipulation. However, direction multiplexing remains relatively underexplored, suffering from low efficiency caused by interleaved atoms and limited polarization versatility. Here, a novel concept of non‐interleaved Janus meta‐devices is proposed for an operation in the microwave regime, which enables high‐efficiency, asymmetric wavefront control of arbitrarily polarized waves. For demonstration and potential applications, we design two proof‐of‐concept meta‐devices by simultaneously controlling both geometric and propagation phases. As such, a metasurface that generates orbital angular momentum with distinct topological charges under oppositely incident right‐handed circular polarization is designed. An additional rotational degree of freedom for elliptical polarization conditioning further enables direction‐dependent holography, projecting the numerals “4” and “7” under illumination of elliptically polarized light with ellipticity π/6 and phase delay π/3. This design significantly expands polarization versatility while enabling compact and reconfigurable asymmetric wave manipulation, offering new opportunities for future applications such as directional wireless communications.
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