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Double-negative multilayer containing an extrinsic random layer thickness magnetized cold plasma photonic quantum-well defect

机译:包含外在随机层厚度的双负多层磁化冷等离子体光子量子阱缺陷

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摘要

Theoretically, the transmission properties of a symmetric double-negative metamaterial one-dimensional photonic crystal containing an extrinsic random layer thickness magnetized cold plasma photonic quantum-well defect structure have been investigated. From the numerical results performed by characteristics matrix method, it is found that, such type of structure possesses a transmission peak within the zero-n gap. To design a tunable microwave filter, the effects of many parameters such as randomness of layer thickness of the multilayer defect in terms of standard deviation (σ), strength of external magnetic field (B) and electron density of magnetized cold plasma (n_e) on transmission peak is discussed. Our findings show that the histogram for the central frequency of the transmission peaks becomes wider with respect to smaller values of σ. In addition, in the case of B, our investigations also reveal that the histogram shifts to the higher frequency range and vice versa while considering the case of n_e. These findings help to design a tunable filter for different microwave applications.
机译:从理论上讲,研究了包含非本征层厚度磁化的冷等离子体光子量子阱缺陷结构的对称双负超材料一维光子晶体的传输特性。从特征矩阵法进行的数值结果可知,这种结构在零-n间隙内具有透射峰。要设计可调谐微波滤波器,许多参数的影响取决于标准偏差(σ),外部磁场强度(B)和磁化冷等离子体的电子密度(n_e)等多层缺陷的层厚随机性。讨论了传输峰值。我们的发现表明,相对于较小的σ,传输峰中心频率的直方图变得更宽。另外,在B的情况下,我们的研究还表明,在考虑n_e的情况下,直方图会移至较高的频率范围,反之亦然。这些发现有助于设计用于不同微波应用的可调滤波器。

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