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首页> 外文期刊>Journal of Applied Physics >Compact high-Q filters based on one-dimensional photonic crystals containing single-negative materials
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Compact high-Q filters based on one-dimensional photonic crystals containing single-negative materials

机译:基于包含单负材料的一维光子晶体的紧凑型高Q滤波器

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摘要

A mechanism to design compact high-Q filters is proposed in this paper, based on the properties of a defect mode in a one-dimensional (1D) photonic crystal composed of alternating layers of negative-permeability material and negative-permittivity material. The eigenfrequency equation for the defect mode is derived by means of the transfer-matrix method, and then, the dependence of the eigenfrequency on the thicknesses of the two host layers and the defect layer is calculated. In contrast to the case for a filter based on a conventional 1D photonic crystal (with positive refractive indices), we find that the quality factor Q of the filter involved in this paper can be boosted noticeably while the volume of the filter decreases.
机译:基于由负磁导率材料和负磁导率材料的交替层组成的一维(1D)光子晶体中的缺陷模式特性,提出了一种设计紧凑的高Q滤波器的机制。利用传递矩阵法推导缺陷模式的本征频率方程,然后计算本征频率对两个主体层和缺陷层厚度的依赖性。与基于常规一维光子晶体(具有正折射率)的滤光片相比,我们发现本文所涉及的滤光片的品质因数Q可以显着提高,而滤光片的体积却减小了。

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