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High-Selectivity Bandpass Frequency-Selective Surface in Terahertz Band

机译:太赫兹带的高选择性带通频率选择表面

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A terahertz (THz) bandpass frequency-selective surface (FSS) with high selectivity is proposed in this work. The three-layered FSS filter consists of identical tripole resonators located on the top and bottom layers and rectangular coupling apertures etched on a conducting plane in between. Multiple signal paths exist between the top and bottom resonators through the coupling apertures. Therefore, this aperture-coupled resonator (ACR) structure exhibits a narrow bandpass response, and two transmission zeros appear near the skirts of the passband. These zero points considerably improve the frequency selectivity and suppress the sidebands of the FSS. For demonstration, a microfabrication process was used to realize an ACR FSS at 850 GHz. The frequency performance of the ACR FSS in terms of insertion loss is investigated numerically and experimentally. The measured transmission responses at normal incidence based on time-domain as well as frequency-domain measurements agree well with the simulated one, thus verifying the proposed design. Furthermore, the frequency-domain measurement reveals that the FSS response remains stable at various incident angles for both TE and TM polarizations.
机译:在这项工作中,提出了具有高选择性的太赫兹(THz)带通频率选择表面(FSS)。三层FSS滤波器由位于顶层和底层的相同的三重谐振器以及蚀刻在两者之间的导电平面上的矩形耦合孔组成。顶部和底部谐振器之间通过耦合孔存在多个信号路径。因此,这种孔径耦合谐振器(ACR)结构表现出窄的带通响应,并且两个传输零出现在通带的裙边附近。这些零点大大提高了频率选择性,并抑制了FSS的边带。为了演示,使用了微细加工工艺来实现850 GHz的ACR FSS。 ACR FSS的频率性能在插入损耗方面的数值和实验研究。基于时域和频域测量的法向入射时的传输响应与仿真结果吻合良好,从而验证了所提出的设计。此外,频域测量表明,对于TE和TM偏振,FSS响应在各种入射角下均保持稳定。

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