Designing metasurface through surface impedance mapping and equivalent circuit model

Yijun Feng, Ke Chen, Bo O. Zhu, Junming Zhao, T. Jiang
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Abstract

The recently developed concept of two dimensional metamaterial — the metasurface, provides more convenient method to manipulate electromagnetic wave in a designable way within subwavelength distance. However, most of the metasurface designs rely on the meta-atom's properties to achieve certain EM wave control. In this presentation, we propose the top-down design method of metasurface through the surface impedance or admittance mapping targeting certain wave transmission functionality. For the meta-atom design we show the use of equivalent circuit model in the design procedure which effectively eases the choice of meta-atom that provides the required surface impedance. As an example, we demonstrate the design of an active Huygens' planar metalens that could achieve dynamic and arbitrary focusing of electromagnetic wave in real-time.
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通过表面阻抗映射和等效电路模型设计超表面
最近发展起来的二维超材料-超表面的概念,为在亚波长范围内以可设计的方式操纵电磁波提供了更方便的方法。然而,大多数的超表面设计依赖于元原子的特性来实现一定的电磁波控制。在本报告中,我们提出了一种自上而下的超表面设计方法,通过表面阻抗或导纳映射来瞄准特定的波传输功能。对于元原子设计,我们展示了在设计过程中使用等效电路模型,有效地简化了提供所需表面阻抗的元原子的选择。以主动惠更斯平面超构透镜为例,设计了一种能够实时实现电磁波动态任意聚焦的超构透镜。
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