首页> 外文期刊>Journal of Electromagnetic Waves and Applications >Accordable filters by defect modes in single and double negative star waveguides grafted dedicated to electromagnetic communications applications
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Accordable filters by defect modes in single and double negative star waveguides grafted dedicated to electromagnetic communications applications

机译:通过专用于电磁通信应用的单个和双负星波导的缺陷模式通过缺陷模式

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摘要

In the framework of the Green Function approach, we determine the transmission spectrum and the band structure of detective one-dimensional photonic star waveguides. This structure is composed of backbones' periodicity that is characterized by negative magnetic permeability mu and positive dielectric permittivity epsilon, grafted in each site by resonators of negative permittivity and positive magnetic permeability. In the middle of the structure, we consider geometrical or/and material defect at the backbone level. The presence of such defect in this structure creates inside the photonic band gaps of the perfect structure, very narrow filtered frequencies (defect modes) with a significant quality factor Q and a very high transmission coefficient. The frequencies of the defect modes are strongly sensitive to the variation of the length and the relative permittivity of the defect. These electromagnetic characteristics of the considered structure provide good information for the design of adjustable wide gap filters.
机译:在绿色功能方法的框架中,我们确定侦探一维光子波导的传输频谱和频带结构。该结构由骨干周期性组成,其特征在于通过负介电常数和正磁导率的谐振器在每个位点接枝在每个部位中的负磁导渗透μ和正介电介电常数。在结构的中间,我们考虑在骨干层面上的几何或/和材料缺陷。这种结构中的这种缺陷的存在在完美结构的光子带间隙内产生,非常窄的过滤频率(缺陷模式),具有显着的质量因子Q和非常高的传动系数。缺陷模式的频率对缺陷的长度的变化和相对介电常数非常敏感。所考虑的结构的这些电磁特性为可调节宽间隙过滤器设计提供了良好的信息。

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