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Metamaterials to bridge propagating waves with surface waves and control electromagnetic waves

机译:超材料可将传播波与表面波桥接并控制电磁波

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摘要

In this work, we demonstrate theoretically and experimentally that a specific gradient-index meta-surface can convert a PW to a SW with nearly 100% efficiency. Distinct from conventional devices such as prism or grating couplers, the momentum mismatch between PW and SW is compensated by the reflection-phase gradient of the meta-surface, and a nearly perfect PW-SW conversion can happen for any incidence angle larger than a critical value. Experiments in the microwave region, including both far-field and near-field characterizations, are in excellent agreement with full-wave simulations. Based on gradient metasurface's idea, we also realized a gradient meta-surface supporting high-efficiency anomalous reflection for near-infrared light and a flat focusing lens for microwave.
机译:在这项工作中,我们在理论上和实验上证明了特定的梯度指数超颖表面可以以近100%的效率将PW转换为SW。与常规设备(例如棱镜或光栅耦合器)不同,PW和SW之间的动量失配由超表面的反射相位梯度补偿,并且对于任何大于临界值的入射角,都可能发生近乎完美的PW-SW转换值。微波区域的实验(包括远场和近场表征)与全波模拟非常吻合。基于梯度超颖表面的思想,我们还实现了一个梯度超颖表面,支持近红外光的高效异常反射,以及一个用于微波的平面聚焦透镜。

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