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Study on control of defect mode in hybrid mirror chirped porous silicon photonic crystal

机译:混合镜啁啾多孔硅光子晶体中缺陷模式控制研究

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摘要

Based on the optical resonance principle and the tight-binding theory, a hybrid mirror chirped porous silicon photonic crystal is proposed. The control of the defect mode in hybrid mirror chirped porous silicon photonic crystal is studied. Through the numerical simulation, the control regulations of the defect modes resulted by the number of the periodical layers for the fundamental unit and the cascading number of the chirped structures are analyzed, and the split and the degeneration of the defect modes resulted by the change of the relative location between the mirror structures and the quasi-mirror structures are discussed. The simulation results show that the band gap would be broadened with the increase of the chirp quantity and the layer number of unilateral chirp. Adjusting the structural parameters of the hybrid mirror structure, the multimode characteristics will occur in the band gap. The more the cascading number of the chirped units, the more the number of the filtering channels will be. In addition, with the increase of the relative location between the mirror structures and the quasi-mirror structures, the degeneration of the defect modes will occur and can obtain high Q value. The structure can provide effective theoretical references for the design the multi-channel filters and high Q value sensors.
机译:基于光学共振原理和紧密结合理论,提出了一种混合镜啁啾多孔硅光子光子光子光子光子光子晶体。研究了混合镜啁啾多孔硅光子晶体中的缺陷模式的控制。通过数值模拟,分析了由基本单元的周期性层的数量和啁啾结构的周期性层的数量导致的缺陷模式的控制规则,并且缺陷模式的分裂和变性是由变化产生的讨论了镜子结构和准镜结构之间的相对位置。仿真结果表明,随着啁啾量的增加和单侧啁啾的层数,带隙将扩大。调整混合镜结构的结构参数,在带隙中会发生多模特性。啁啾单位的级联数量越多,滤波通道的数量就越多。另外,随着镜子结构和准镜结构之间的相对位置的增加,缺陷模式的退化将发生并且可以获得高Q值。该结构可以为设计多通道滤波器和高Q值传感器提供有效的理论引用。

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