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Independent Control of Copolarized Amplitude and Phase Responses via Anisotropic Metasurfaces

机译:通过各向异性元锉的独立控制通过各向异性元裂缝

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摘要

A class of anisotropic, transmissive electromagnetic metasurfaces is presented, which enable independent and simultaneous control of copolarized phase and amplitude responses to two linear, orthogonal polarizations. By varying the geometrical parameters, the transmission response of the proposed structure can yield a full phase coverage, accompanied by broadly adjustable amplitude and negligible cross-polarized components. The full amplitude-phase control together with the novel anisotropic character allows efficient implementation of complicated field manipulations. As representative application examples, which cannot be realized via conventional (phase-only) metasurfaces, it is presented here: (1) the radiation of multiple equal-power vortex beams (along arbitrarily predesigned directions, with designable orbital angular momentum modes under different polarizations), and (2) the realization of polarization-reconfigurable multifocal metalenses. Full-wave numerical simulations and experimental results demonstrate good agreement and confirm the versatility and effectiveness of the proposed approach to design advanced field-manipulation systems.
机译:提出了一类各向异性的透射电磁质元件,其能够独立和同时控制与两个线性,正交偏振的共同化相位和幅度响应。通过改变几何参数,所提出的结构的传输响应可以产生全相覆盖,伴随着广泛可调的幅度和可忽略不计的交叉偏振分量。与新的各向异性特征一起进行全幅度相位控制允许有效地实现复杂的现场操纵。作为代表性的应用示例,其不能通过常规(仅相位)的元件来实现,本文介绍:(1)多个等功率涡流波束的辐射(沿任意预测的方向,具有不同偏振下的可设计轨道角动量模式(2)实现极化可重新配置的多焦质金属纤维。全波数值模拟和实验结果表明了良好的一致性,并确认了建议的设计方法的多功能性和有效性设计先进的现场操纵系统。

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