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Influence of the polarization and optical axis on the transmission behavior in a one dimensional photonic crystal containing uniaxial metamaterial

机译:偏振和光轴对含单轴超材料的一维光子晶体中的传输行为的影响

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摘要

In this letter, we introduce a one-dimensional photonic crystal (1DPC) structure with a uniaxial metamaterial defect layer. It is proposed to control the transmitted wave of the defect mode by adjusting the orientation of the optical axis and incidence angle for both polarization states. The 4 x 4 transfer matrix method was employed to calculate the transmittance spectrum of the proposed structure. It is shown that the photonic band gaps, the intensity and the peak wavelength of the defect mode depends on the polarization, the orientation of the optical axis and the incidence angle of the wave, due to the strong anisotropy of the metamaterial. The transmittance spectrum curves at different optical axes of the uniaxial metamaterial and the distinct incidence angles are illustrated graphically. It is shown that the defect mode appears as a peak in the transmission spectrum. Pronounced contrasts in the intensity, wavelength positions of the defect mode and photonic band gap were demonstrated depending on the incidence angle and the orientation of the optical axis of the uniaxial metamaterial defect layer for both polarizations. Our structure offers a great variety of possibilities for designing and controlling the transmitted intensity of the defect mode.
机译:在这封信中,我们用单轴超缺陷层引入一维光子晶体(1dpc)结构。建议通过调整光轴的方向和两个偏振态的入射角来控制缺陷模式的透射波。采用4×4传递矩阵法计算所提出的结构的透射谱。结果表明,缺陷模式的光子带间隙,强度和峰值波长取决于偏振,光轴的取向和波的入射角,由于超大材料的强向各向异性。图形地示出了单轴超级材料和不同入射角的不同光轴下的透射谱曲线。结果表明,缺陷模式显示为传输频谱中的峰值。在强度,缺陷模式和光子带隙的波长位置的明显对比度取决于两个偏振的单轴超材料缺陷层的光轴的入射角和光轴的取向来证明。我们的结构为设计和控制缺陷模式的传输强度提供了各种各样的可能性。

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