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Graphene Reflective Metasurface for Generating Spin-Controlled Vortex Waves in the Terahertz Regime

机译:石墨烯反射超表面,用于在太赫兹状态下产生自旋控制的涡旋波

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In this paper, a graphene reflective metasurface for generating spin-controlled vortex waves is proposed in the terahertz domain. By patterning the graphene cells into the phase distribution of corresponding topological modes, the proposed graphene metasurface is capable of generating a vortex beam carrying orbital angular momentum (OAM). More importantly, taking advantages of the Pancharatnam-Berry (PB) phase method, a spin-controlled OAM beam can be achieved in the reflective orientation. Compared with line-polarized OAM, the proposed spin-controlled beams can provide one more degree of freedom for THz wireless communication. Numerical simulations results demonstrate the spin vortex waves with various topological modes can be flexibly achieved by this graphene metasurface, which paves a way to generate spin OAM vortex waves for communication systems in terahertz.
机译:在本文中,在太赫兹域中提出了一种用于产生自旋控制涡流波的石墨烯反射元表面。通过将石墨烯细胞进行图案化为相应拓扑模式的相分布,所提出的石墨烯元表面能够产生携带轨道角动量(OAM)的涡流束。更重要的是,采取Pancharatnam-Berry(PB)相位方法的优点,可以在反射方向上实现自旋控制的OAM光束。与线极化OAM相比,所提出的旋转控制光束可以为THz无线通信提供一种更多程度的自由度。数值模拟结果表明,通过该石墨烯元表面可以灵活地实现具有各种拓扑模式的旋转涡流波,这铺设了一种用于在太赫兹的通信系统产生旋转OAM涡流波的方法。

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