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Polarization-independent guided-mode resonance filtering by all-dielectric gratings in the terahertz region

机译:太赫兹地区的全电介质光栅偏振无关的引导模式谐振滤波

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We propose an angular-dependent polarization-insensitive filter in the terahertz (THz) region, based on the guided-mode resonance of one-dimensional zero-contrast grating architectural design. Particle swarm optimization combined with the rigorous coupled-wave analysis method is used to design the filter and investigate the influences of the planes of incidence on the characteristics of the proposed all-dielectric THz filter. With the planes of incidence set at 0 degrees, 30 degrees, 45 degrees, and 60 degrees, the polarization-independent resonances occur at 0.458 THz, 0.459 THz, 0.461 THz, and 0.465 THz under oblique incidences of 9.3 degrees, 10.8 degrees, 13.3 degrees, and 19.2 degrees, respectively, which means the oblique incident angle of the polarization-independent THz filter increases with the rotation of the planes of incidence from classic mounting to fully conical mounting. In addition, for the fully conical mounting case, the resonance has high angular stability and is no longer split, compared with classic incidence; meanwhile, there is only a tiny blue shift in resonance of less than 3 GHz when changing the incident angle from 0 degrees to 10 degrees. The physical mechanism of the spectral characteristics is also analyzed in detail. The spectral properties proposed herein enable significant potential application in the fields of spectroscopy, image sensors, communication, etc., in the THzregion. (C) 2020 Optical Society of America
机译:基于一维零对比光栅架构设计的引导模式谐振,我们提出了一种在太赫兹(THz)区域中的角度依赖性极化过滤器。粒子群优化结合严格的耦合波分析方法来设计过滤器,并研究发病率平面对所提出的全电介质THZ过滤器特性的影响。随着0度,30度,45度和60度的入射平面,偏振无关的共振,在0.459六号,0.459至0.461六个,0.465至0.465六号,0.465至0.465六号,10.3度,10.8度,13.3度分别为19.2度,这意味着偏振 - 无关的THz过滤器的倾斜入射角随着传统安装到完全圆锥形安装的传统安装平面的旋转而增加。另外,对于完全锥形安装盒,与经典发病率相比,共振具有高角度稳定性并且不再分裂;同时,在将0度到10度的入射角改变入射角时,只有小于3 GHz的微小蓝色偏移。还详细分析了光谱特性的物理机制。这里提出的光谱特性能够在THzregion中的光谱,图像传感器,通信等领域中的显着潜在应用。 (c)2020美国光学学会

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    《Applied optics》 |2020年第8期|共7页
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