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Ultrathin Terahertz Quarter-wave plate based on Split Ring Resonator and Wire Grating hybrid Metasurface

机译:基于裂环谐振器和线栅混合超颖表面的超薄太赫兹四分之一波片

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摘要

Planar metasurface based quarter-wave plates offer various advantages over conventional waveplates in terms of compactness, flexibility and simple fabrication; however they offer very narrow bandwidth of operation. Here, we demonstrate a planar terahertz (THz) metasurface capable of linear to circular polarization conversion and vice versa in a wide frequency range. The proposed metasurface is based on horizontally connected split ring resonators and is realized on an ultrathin (0.05λ) zeonor substrate. The fabricated quarter waveplate realizes linear to circular polarization conversion in two broad frequency bands comprising 0.64–0.82 THz and 0.96–1.3 THz with an insertion loss ranging from −3.9 to −10 dB. By virtue of ultrathin sub wavelength thickness, the proposed waveplate design is well suited for application in near field THz optical systems. Additionally, the proposed metasurface design offers novel transmission phase characteristics that present further opportunities to realize dynamic polarization control of incident waves.
机译:基于平面超表面的四分之一波片在紧凑性,灵活性和简单制造方面比传统波片具有多种优势。但是它们提供了非常窄的操作带宽。在这里,我们展示了一个平面太赫兹(THz)超表面,能够在很宽的频率范围内进行线性到圆极化转换,反之亦然。拟议的超表面基于水平连接的裂环谐振器,并在超薄(0.05λ)的Zeonor基板上实现。制作的四分之一波片在包括0.64–0.82 THz和0.96–1.3 THz的两个宽频带内实现线性到圆偏振转换,插入损耗范围为-3.9至-10 dB。由于超薄的亚波长厚度,所提出的波片设计非常适合在近场THz光学系统中应用。此外,提出的超表面设计提供了新颖的传输相位特性,为实现入射波的动态偏振控制提供了更多的机会。

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