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首页> 外文期刊>Optical and quantum electronics >Tunable narrowband terahertz multichannel filter based on one-dimensional graphene-dielectric photonic crystal
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Tunable narrowband terahertz multichannel filter based on one-dimensional graphene-dielectric photonic crystal

机译:基于一维石墨烯 - 介电光子晶体的可调窄带太赫兹多通道滤波器

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摘要

In this work, low terahertz (THz) spectroscopic properties of defective one-dimensional graphene-dielectric photonic crystal (1D-GPC) structure are theoretically investigated and analyzed in detail. The 1D-GPC is composed of a periodic stack of graphene nanolayers separated by isotropic dielectric slabs (SiO_2), including an air defect as a central layer. The study is carried out using the well known transfer matrix method. Our numerical simulations showed that the suggested structure exhibits comb-like resonant peaks in the first transmission band of the 1D-GPC. These peaks are narrow, fully separated from each other and their number density increases by increasing the number of periods of the structure. Tunability of the optical characteristics of the device is also explored, taking into account the dependencies to the incidence angle, width, thickness, and refractive index of the dielectric layers, and the chemical potential of graphene sheets. Our calculations reveal that these transmission channels exhibit tunable behaviors against the parameters mentioned above. The observed spectroscopic features of the proposed structure make it an ideal candidate to realize tunable narrowband multichannel filters.
机译:在这项工作中,理论上研究和分析了缺陷的一维石墨烯 - 介电光子晶体(1D-GPC)结构的低硫化(Thz)光谱性能。 1D-GPC由通过各向同性介电板(SiO_2)分离的石墨烯纳米层的周期性堆叠,包括作为中心层的空气缺陷。使用众所周知的转移矩阵法进行该研究。我们的数值模拟表明,建议的结构在1D-GPC的第一传输带中呈现梳状谐振峰。这些峰值窄,彼此完全分离,并且它们的数量密度通过增加结构的周期数来增加。还探讨了该装置的光学特性的可随局性,考虑到介电层的距离角,宽度,厚度和折射率的依赖关系以及石墨烯片的化学电位。我们的计算表明,这些传输信道对上述参数表现出可调性行为。所观察到的结构的光谱特征使其成为实现可调窄带多通道过滤器的理想候选者。

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