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Low-profile antennas with 100 aperture efficiency based on cavity-excited omega-type biansiotropic metasurfaces

机译:基于腔激发的Ω型双斜交变面的低剖面天线,具有100%的孔径效率

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摘要

We propose a novel concept for highly-directive low-profile antennas, based on a single localized source embedded in a cavity, covered by an omega-type bianistoropic metasurface (BMS). We show that such metasurfaces, which include subwavelength particles with electric and magnetic polarizabilities, and magnetoelectric coupling, allow control of both the aperture field phase and the BMS reflection coefficient, without requiring active or lossy components. Subsequently, we use this degree of freedom to exclusively excite the highest-order fast lateral mode, guaranteeing optimal aperture illumination efficiency for arbitrarily-large apertures, without incurring edge-taper losses. We verify our semianalytical calculations with full-wave simulations, showing that the proposed antenna can outperform our previously-introduced cavity-excited Huygens' metasurface antenna, offering a simple and efficient design for compact high-gain antennas.
机译:我们提出了一种高指向性低剖面天线的新颖概念,该概念基于嵌入在空腔中的单个局部声源,并被欧米茄类型的双反视变表面(BMS)覆盖。我们表明,这种亚表面包括具有电和磁极化率的亚波长粒子,以及磁电耦合,可以控制孔径场相位和BMS反射系数,而无需有源或有损组件。随后,我们使用这种自由度专门激发最高阶的快速横向模式,从而保证了任意大光圈的最佳光圈照明效率,而不会造成锥度损失。我们用全波仿真验证了我们的半分析计算结果,表明所提出的天线可以胜过我们先前介绍的腔激励惠更斯的超表面天线,为紧凑型高增益天线提供了一种简单有效的设计。

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