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Classification of Modes in Suspended-Membrane 19-Missing-Hole Photonic-Crystal Microcavities

机译:悬浮膜19缺失孔光子晶体微腔中的模式分类

摘要

Suspended-membrane 19-missing-hole microcavities in triangular lattice photonic crystals are numerically modeled by a three-dimensional finite-difference time-domain method. The resonance frequencies and the quality factors are calculated by interpolation of the discrete Fourier transformation series of the field with a Padé polynomial. The numerical results are compared with the photoluminescent spectra measured on the cavity of a nearly identical dimension. The symmetry properties of the defect modes are analyzed with the group theory, and resonance modes in the photonic-crystal cavities are identified as irreducible representations of the C_6v point group. The far-field radiations of the identified modes in the free space are also calculated by use of a vector Greenu27s function. It is found that the numerical results agree very well with the experimental measurement in various aspects.
机译:通过三维有限差分时域方法,对三角晶格光子晶体中的悬浮膜19漏孔微腔进行了数值模拟。共振频率和品质因数是通过使用Padé多项式对场的离散傅立叶变换序列进行插值计算得出的。将数值结果与在几乎相同尺寸的腔上测得的光致发光光谱进行比较。利用群论分析了缺陷模式的对称性质,并将光子晶体腔中的共振模式识别为C_6v点组的不可约表示。还通过使用矢量格林函数来计算自由空间中已识别模式的远场辐射。发现数值结果与各个方面的实验测量结果非常吻合。

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