首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Defect modes properties in periodic lossy multilayer containing negative index materials with symmetric and asymmetric geometric structures
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Defect modes properties in periodic lossy multilayer containing negative index materials with symmetric and asymmetric geometric structures

机译:具有对称和不对称几何结构的含负折射率材料的周期性有损多层的缺陷模式特性

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摘要

In this paper, the characteristic matrix method is used to study the propagation of electromagnetic waves through one-dimensional lossy photonic crystals composed of negative and positive refractive index material layers with symmetric and asymmetric geometric structures with a defect layer at the center of the structure. First, the positive index material defect layer is considered, and the effects of the polarization and the angle of incidence on the defect mode in the transmission spectra of the both structures are investigated. The results show that the number of the defect modes in the transmission spectra depends on the geometry (symmetric or asymmetric) of the structure. In addition, it is shown that the defect mode frequency increases as the angle of incidence increases. This property is independent of the geometry of the structure. Then, for normal incidence, the negative index material defect layer is considered, and the properties of defect modes for both structures are investigated. The results can lead to designing new types of transmission narrow filters.
机译:在本文中,使用特征矩阵方法研究电磁波通过一维有损耗光子晶体的传播,该晶体由具有正负对称结构的负折射率材料层和正折射率材料层组成,结构中心具有缺陷层。首先,考虑正折射率材料的缺陷层,研究两种结构的透射光谱中的极化和入射角对缺陷模式的影响。结果表明,透射光谱中缺陷模式的数量取决于结构的几何形状(对称或不对称)。另外,表明缺陷模式频率随着入射角的增加而增加。此属性与结构的几何形状无关。然后,对于法向入射,考虑负折射率材料缺陷层,并研究两种结构的缺陷模式的性质。结果可能导致设计新型的传输窄带滤波器。

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