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Orbital Angular Momentum Generation Using a Bi-Functional Pancharatnam-Berry Metasurface

机译:使用双功能Pancharatnam-Berry超表面的轨道角动量生成

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Recent several works show that metasurfaces possess unprecedented abilities to manipulate the wave front, leading to plenty of fascinating physical phenomena such as anomalous refraction and reflection, focusing lens, holograms, vortex beam generators and so on. Despite of the great stride in this area, it can be noted that most of the meta-devices only concentrate on the modulation of reflection or transmission waves, while leaving the half of electromagnetic waves unexplored. To promote the performance and implement more advanced functionalities, it is meaningful to design metasurfaces which can manipulate the transmitted and reflected electromagnetic waves simultaneously. Here a novel approach is proposed to generate Orbital angular momentum (OAM) via a bi-functional Pancharatnam-Berry metasurface. The metasurface can operate in both transmission and reflection modes, to efficiently manipulate the electromagnetic waves in the full space. The phase of cross-polarized transmitted and co-polarized reflected waves can be simultaneously adjusted by simply rotating the patterns. It can be demonstrated theoretically that, by elaborately arranging the elements with specific phase distributions, the OAM vortex beam can be realized for both transmission and reflection mode. Compared with traditional methods, the metasurface is especially advantageous for low profile, small mass, low manufacturing cost, and design simplicity. Our work extends the approaches of OAM generation and provides a new platform for next generation communication and radar systems.
机译:最近的几项工作表明,超颖表面具有空前的操纵波阵面的能力,从而导致了许多引人入胜的物理现象,例如反常折射和反射,聚焦透镜,全息图,涡旋束发生器等。尽管在该领域取得了长足的进步,但可以注意到,大多数元设备仅专注于反射波或传输波的调制,而电磁波的一半尚未开发。为了提高性能并实现更高级的功能,设计能够同时操纵透射和反射电磁波的超颖表面是有意义的。在这里,提出了一种新颖的方法来通过双功能Pancharatnam-Berry超表面生成轨道角动量(OAM)。超表面可以以透射和反射两种模式运行,以有效地操纵整个空间中的电磁波。可以通过简单地旋转图案来同时调整交叉极化的透射波和同极化的反射波的相位。从理论上可以证明,通过精心布置具有特定相位分布的元件,可以实现透射和反射模式的OAM涡旋光束。与传统方法相比,超颖面在外形小巧,质量轻,制造成本低和设计简单方面尤其具有优势。我们的工作扩展了OAM生成的方法,并为下一代通信和雷达系统提供了一个新平台。

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