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Finite-element analysis of photonic Crystal cavities: time and frequency domains

机译:光子晶体腔体的有限元分析:时域和频域

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摘要

Finite-element analysis in time and frequency domains using perfectly matched layers and isoparametric curvilinear elements for finite-size photonic-crystal (PC) cavities is presented in this paper. The time-domain approach includes current sources, the full band scheme, and the slowly varying envelope approximation; consequently, bigger time steps can be used independent of the size of the elements. The resonant frequency, quality factor, effective modal area, and field distribution for each mode can be obtained in a single simulation. A strategy to compute the higher resonant modes by using only a quarter of the cavity and adequate boundary conditions is also presented.
机译:本文针对有限尺寸的光子晶体(PC)腔,使用完美匹配的层和等参曲线元素对时域和频域进行有限元分析。时域方法包括电流源,全频带方案和缓慢变化的包络近似。因此,可以使用更大的时间步长,而与元素的大小无关。可以在单个模拟中获得每种模式的谐振频率,品质因数,有效模态面积和场分布。还提出了一种仅使用空腔的四分之一和适当边界条件来计算较高共振模的策略。

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