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Narrow transmission mode in one-dimensional symmetric defective photonic crystal containing metamaterial and high T-c superconductor

机译:一维对称缺陷光子晶体中的窄传动模式,包括超高T-C超导体的一维对称光子晶体

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摘要

We theoretically investigate the properties of narrow transmission mode (defect mode) within the reflection band in one-dimensional symmetric defective photonic crystal containing double negative metamaterial and high temperature superconductors. The transmittance spectrum of the proposed structure is obtained by using the characteristic or transfer matrix method. The results show that by increasing the thickness of air defect, transmission mode shifts towards the lower frequency side. But when the thickness of a superconductor layer is increased, transmission mode shifts towards the high frequency side. Further, the effect of temperature variation of superconducting defect on the defect mode has been investigated and found that when the temperature of superconducting layer increases the frequency of defect mode is red shifted. The shift in frequency has smaller value in the lower temperature region than in the higher temperature region, even if the change in temperature is same. Finally we have discussed the effect of variation of thickness on the defect mode by using the double negative metamaterial as defect layer in place of superconductor layer. The result shows that we get two modes for smaller thickness of double negative layer but only a single mode for larger thickness.
机译:理论上,从一维对称缺陷光子晶体中的反射带内的窄传输模式(缺陷模式)的特性研究了含双负星系和高温超导体的反射带内。通过使用特征或传递矩阵法获得所提出的结构的透射谱。结果表明,通过增加空气缺陷的厚度,传输模式朝向下频率偏移。但是,当超导体层的厚度增加时,传输模式朝向高频侧移动。此外,已经研究了超导缺陷对缺陷模式的温度变化的影响,并发现当超导层的温度增加缺陷模式的频率是红色移位。即使温度的变化相同,频率频率比在较高温度区域中的较小值比在较高温度区域中具有较小的值。最后,我们已经讨论了通过使用双负星系作为缺陷层代替超导体层来讨论厚度变化对缺陷模式的影响。结果表明,我们得到两种模式,用于较小厚度的双负层,但只有一个厚度的单一模式。

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