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Band flips and bound-state transitions in leaky-mode photonic lattices

机译:漏模光子晶格中的带翻转和束缚态跃迁

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We present analytical and numerical results on the formation and properties of the leaky stop band in one-dimensional photonic lattices. At the second stop band, one band edge mode suffers radiation loss generating guided-mode resonance whereas the other band edge mode becomes a non-leaky bound-state in the continuum. We show that the frequency location of the leaky band edge, and correspondingly the bound-state edge, is determined by superposition of Bragg processes generated by the first two Fourier harmonics of the spatial dielectric constant modulation. At the closed-band state, we discover an analytic condition for the exceptional point where frequency is fully degenerate.
机译:我们提出一维光子晶格中的漏阻带的形成和性质的分析和数值结果。在第二阻带处,一个频带边缘模式遭受辐射损失,产生导模共振,而另一个频带边缘模式则成为连续谱中的非泄漏结合态。我们表明,泄漏带边缘的频率位置,以及相应的束缚态边缘,是由空间介电常数调制的前两个傅里叶谐波产生的布拉格过程的叠加确定的。在闭带状态下,我们发现了频率完全退化的特殊点的解析条件。

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