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Dual-Phase Hybrid Metasurface for Independent Amplitude and Phase Control of Circularly Polarized Wave

机译:圆极化波的独立幅度和相位控制的双相混合元表面

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摘要

Achieving independent control of the amplitude and phase of the electromagnetic (EM) wave by a thin flat device is very important in wireless and photonic communications. However, most of the reported metasurfaces, so far, have realized only the simultaneous control of the amplitude and phase of the linearly polarized EM wave. This communication presents a strategy to realize the independent and arbitrary control of the amplitude and phase responses for the circularly polarized EM wave by using a dual-phase hybrid metasurface that integrates both geometric and propagation phases. A beam deflector with a tailorable amplitude is then designed to verify the proposed strategy. As a proof of concept of its practical application, a circularly polarized reflector antenna with a high gain and an extremely low sidelobe is implemented by the proposed metasurface. Experimental results are in good accordance with the simulation ones, demonstrating that the sidelobe of the designed antenna can be reduced by 8 dB compared with a reflector antenna actualized by the phase-only metasurface. The proposed methodology and the metasurface can provide a new degree of freedom in controlling the circularly polarized waves by simultaneous phase and amplitude modulations, which may trigger many interests in EM/optical integration and complex EM-wave manipulations, as well as advanced metadevices for real-world applications.
机译:通过薄的扁平装置实现对电磁(EM)波的幅度和相位的独立控制在无线和光子通信中非常重要。然而,到目前为止,大多数报告的元锉都已经仅实现了线性偏振EM波的幅度和相位的同时控制。该通信提供了一种通过使用整合几何和传播阶段的双相混合元表面来实现对圆极化的EM波的幅度和相位响应的独立和相位响应的策略。然后设计具有可定制幅度的梁偏转器以验证所提出的策略。作为其实际应用的概念证明,通过所提出的元表面实现具有高增益和极低侧瓣的圆极化反射器天线。实验结果与模拟介绍良好,表明设计天线的侧瓣与由仅相位元表面的反射器天线相比,可以减少8dB。所提出的方法和元表面可以通过同时相位和幅度调制来控制圆极化波的新的自由度,这可能引发许多兴趣在EM /光学集成和复杂的EM波操作中,以及真实的高级元-world应用程序。

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