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Tunability of multichannel optical filter based on magnetized one-dimensional plasma photonic crystal

机译:基于磁化一维等离子体光子晶体的多通道滤光器的可调谐性

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A one dimensional plasma photonic crystal (1DPPC) structure was proposed to design a tunable compressing/broadening multi-channel optical filter with external controllability. The 1DPPC with arrangement of (AP)D-n(PA)(n), where A and D are the dielectric materials, P is a magnetized plasma layer and n is the number of the periodicity, was proposed. The well-known transfer matrix method was employed for analysis. In linear transmittance spectrum, n - 1 defect modes were appeared inside the photonic band gap. The results were shown that by increasing the applied magnetic field intensity and its direction, a red-shift and blue-shift were, respectively, observed in defect mode frequencies. On the other hand, the modes were compressed and broadened with increasing the intensity and the direction of the applied magnetic field, respectively. Externally controllable defect modes can be useful in designing a multichannel tunable optical filter. (C) 2015 AIP Publishing LLC.
机译:提出了一种一维等离子体光子晶体(1DPPC)结构,以设计一种具有外部可控性的可压缩压缩/扩展多通道滤光器。提出了一种结构为(AP)D-n(PA)(n)的1DPPC,其中A和D为介电材料,P为磁化等离子体层,n为周期数。采用众所周知的转移矩阵法进行分析。在线性透射光谱中,在光子带隙内出现n-1个缺陷模式。结果表明,通过增加施加的磁场强度及其方向,在缺陷模式频率下分别观察到红移和蓝移。另一方面,模式分别随着所施加磁场的强度和方向的增加而压缩和展宽。外部可控制的缺陷模式在设计多通道可调光学滤波器时可能很有用。 (C)2015 AIP Publishing LLC。

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