Building Simple and Effective Metasurfaces by Coarse Discretization

A. Wong, K. A. Oyesina
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Abstract

This work summarizes the authors recent research experiences and identifies advantages which one can gain by designing a metasurface with coarse discretization. Whereas most metasurfaces approximate a continuous impedance variation with a finely-discretized one, we show that in some cases coarse-grained discretization yields surprising benefits. In the presentation, we will summarize our recent works which show that the coarse dis-cretization paradigm produces metasurface designs which are power efficient, simple to fabricate, and feature robust and broadband operation beyond traditional continuous metasurfaces. We will also preview our ongoing works in applying this paradigm to improve communication and imaging devices.
用粗离散法建立简单有效的元曲面
本工作总结了作者最近的研究经验,并确定了设计粗糙离散化的超表面可以获得的优势。虽然大多数超表面近似连续阻抗变化与精细离散,我们表明,在某些情况下,粗粒度离散产生惊人的好处。在演讲中,我们将总结我们最近的工作,这些工作表明,粗离散化范式产生的元表面设计节能,易于制造,并且具有超越传统连续元表面的鲁棒性和宽带操作。我们还将预览我们正在进行的应用这种模式来改进通信和成像设备的工作。
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