论文标题

紧凑型Huygens的跨表面对的设计,具有多种反射,用于任意波转换

Design of Compact Huygens' Metasurface Pairs with Multiple Reflections for Arbitrary Wave Transformations

论文作者

Ataloglou, Vasileios G., Dorrah, Ayman H., Eleftheriades, George V.

论文摘要

Huygens的元面积表现出在亚波长区域内进行波动转变的显着潜力。尤其是,欧米茄 - 二异构性huygens的跨索额允许被动实施任何在当地保存真正的力量的波动转换。先前的报告还表明,Huygens的MetaSurface对能够通过重新分布总功率来实现破坏局部功率保护要求的转换,而波浪在两个元信息之间传播。但是,所需的分离距离掩盖了单个跨面的低调特征,并导致了笨重的设计,尤其是对于较低的频率。在这项工作中,我们开发了一种设计欧米茄 - 苯甲酸huygens的元曲面对,依赖于两个元信息的实际功率的点匹配过程。我们通过呈现配置的两种变体来强调我们方法的多功能性,具体取决于电磁源是否位于元图对内还是外部。基于圆柱波到平面波变换和梁扩展器的示例,我们研究了多种反射的影响,以克服尺寸限制和设计紧凑的结构。此外,我们通过泰勒 - 图案天线的示例探索了可能的波束形成应用,这两个元时间之间具有单个进料点。

Huygens' metasurfaces have demonstrated a remarkable potential to perform wave transformations within a subwavelength region. In particular, omega-bianisotropic Huygens' metasurfaces have allowed for the passive implementation of any wave transformation that conserves real power locally. Previous reports have also shown that Huygens' metasurface pairs are capable of realizing transformations that break the local power conservation requirement by redistributing the total power, while the wave propagates between the two metasurfaces. However, the required separation distance overshadows the low-profile characteristics of the individual metasurfaces and leads to bulky designs, especially for lower frequencies. In this work, we develop a method of designing omega-bianisotropic Huygens' metasurface pairs, relying on a point-matching process of the real power at the two metasurfaces. We highlight the versatility of our method by presenting two variations of the configuration, depending on whether the electromagnetic source is located within or outside the metasurface pair. Based on the examples of a cylindrical-wave to plane-wave transformation and a beam expander, we examine the impact of multiple reflections, as a way to overcome the size limitations and design compact structures. Moreover, we explore possible beamforming applications through an example of a Taylor-pattern antenna with a single feed-point between the two metasurfaces.

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