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Representation of Photonic Crystals and Their Localized Modes Through the Use of Fourier–Bessel Expansions

机译:通过使用傅立叶-贝塞尔展开式表示光子晶体及其局域模式

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摘要

Photonic crystal (PhC) geometry is typically characterized by its translational symmetry. However, it can be treated based on the rotationally symmetry through the use of Fourier-Bessel expansions about the center of rotation. Fourier-Bessel expansions of the inverse dielectric of the structures and the transverse electric (TE) localized modes extract the rotational symmetry that is present. The results show that in PhCs and photonic quasi-crystals, the localized Hz field contains only the rotational orders that correspond to the rotational order of the dielectric plus and minus the rotational order of the corresponding perfect state. This relationship indicates the potential for simplification within the master equation in cylindrical coordinates that will require further examination.
机译:光子晶体(PhC)的几何形状通常以其平移对称性为特征。但是,可以通过使用围绕旋转中心的傅立叶-贝塞尔展开基于旋转对称性来进行处理。结构的逆电介质的傅里叶-贝塞尔展开和横向电(TE)局部模式提取了存在的旋转对称性。结果表明,在PhCs和光子准晶体中,局部H z 场仅包含与电介质的旋转顺序相对应的旋转顺序,再减去相应的理想状态的旋转顺序。这种关系表明在圆柱坐标系中的主方程内有可能需要进一步检验。

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