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Control of the Spin Angular Momentum and Orbital Angular Momentum of a Reflected Wave by Multifunctional Graphene Metasurfaces

机译:多功能石墨烯超表面对反射波的自旋角动量和轨道角动量的控制

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摘要

Three kinds of multifunctional graphene metasurfaces based on Pancharatnam–Berry (PB) phase cells are proposed and numerically demonstrated to control a reflected wave’s spin angular momentum (SAM) and orbital angular momentum (OAM) in the terahertz (THz) regime. Each proposed metasurface structure is composed of an array of graphene strips with different deviation angles and a back-grounded quartz substrate. In order to further help readers have a deeper insight into the graphene-based metasurfaces, a detailed design strategy is also provided. With the aid of the designed graphene elements, the proposed metasurfaces can achieve the full 360° range of phase coverage and provide manipulation of SAM and OAM of a circularly polarized (CP) wave at will. More importantly, simultaneous control of these two momentums can also be realized, and in order to demonstrate this function, a THz spin-controlled OAM beam generator with diverse topological charges is created, which can provide one more degree of freedom to improve the channel capability without increasing the bandwidth compared to a linearly polarized (LP) OAM beam. Numerical results verify the proposed graphene metasurfaces, which pave the way for generating spin OAM vortex waves for THz communication systems.
机译:提出了三种基于Pancharatnam–Berry(PB)相单元的多功能石墨烯超表面,并进行了数值演示,以控制太赫兹(THz)态下的反射波的自旋角动量(SAM)和轨道角动量(OAM)。每个提出的超表面结构均由具有不同偏斜角的石墨烯带阵列和背面接地的石英基板组成。为了进一步帮助读者更深入地了解基于石墨烯的超表面,还提供了详细的设计策略。借助设计的石墨烯元素,拟议的超表面可以实现360°的相位覆盖范围,并随意操纵圆极化(CP)波的SAM和OAM。更重要的是,还可以同时控制这两个动量,并且为了演示该功能,创建了具有多种拓扑电荷的太赫兹自旋控制OAM光束发生器,它可以提供一个更大的自由度来改善信道能力与线性偏振(LP)OAM光束相比,不会增加带宽。数值结果验证了提出的石墨烯超表面,这为THz通信系统产生自旋OAM涡旋波铺平了道路。

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