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Metasurfaces with engineered reflection and transmission: Optimal designs through coupled-mode analysis

机译:工程反射和透射的超表面:通过耦合模式分析的最佳设计

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Gradient metasurfaces have recently received significant attention for the unique opportunities they offer for advanced wave manipulation. Such metasurfaces are usually discrete implementations of surface impedance profiles, which are analytically derived to yield the desired operation. Several recent numerical and experimental studies have shown that gradient metasurfaces can work very well over large bandwidths, extending to frequencies where the definition of surface impedance is not straightforward. Here, we develop an alternative description of such metasurfaces based on coupled-mode theory and provide an explanation for this intriguing effect. Quite surprisingly, our theory shows that broadband anomalous reflection and transmission, does not necessarily require the use of spatial gradients, but they can be achieved through suitably designed periodic arrays of resonant particles. In addition to their theoretical importance, our results can be important for the design of efficient metasurfaces with specified frequency response.
机译:梯度超表面最近因其为高级波处理提供的独特机会而受到了广泛的关注。这样的超表面通常是表面阻抗分布的离散实现,通过分析得出这些阻抗以产生所需的操作。最近的一些数值和实验研究表明,梯度超表面可以在较大的带宽上很好地工作,并扩展到表面阻抗定义不那么简单的频率。在此,我们基于耦合模式理论开发了此类超表面的替代描述,并为这种引人入胜的效果提供了解释。非常令人惊讶的是,我们的理论表明,宽带异常反射和传输并不一定需要使用空间梯度,而是可以通过适当设计的共振粒子的周期性阵列来实现。除了它们的理论重要性外,我们的结果对于设计具有指定频率响应的高效超颖表面可能也很重要。

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