Modeling cavities exhibiting strong lateral confinement using open geometry Fourier modal method

T. Häyrynen, N. Gregersen
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Abstract

We have developed a computationally efficient Fourier-Bessel expansion based open geometry formalism for modeling the optical properties of rotationally symmetric photonic nanostructures. The lateral computation domain is assumed infinite so that no artificial boundary conditions are needed. Instead, the leakage of the modes due to an imperfect field confinement is taken into account by using a basis functions that expand the whole infinite space. The computational efficiency is obtained by using a non-uniform discretization in the frequency space in which the lateral expansion modes are more densely sampled around a geometry specific dominant transverse wavenumber region. We will use the developed approach to investigate the Q factor and mode confinement in cavities where top DBR mirror has small rectangular defect confining the modes laterally on the defect region.
利用开放几何傅里叶模态方法模拟具有强侧向约束的空腔
我们开发了一种计算效率高的基于傅里叶-贝塞尔展开的开放几何形式,用于模拟旋转对称光子纳米结构的光学特性。横向计算域假定为无穷大,因此不需要人工边界条件。相反,使用扩展整个无限空间的基函数来考虑由于不完善的场约束引起的模态泄漏。计算效率是通过在频率空间中使用非均匀离散来获得的,其中横向扩展模态在几何形状特定的优势横波数区域周围更密集地采样。我们将使用开发的方法来研究在顶部DBR镜具有小矩形缺陷的腔中Q因子和模约束,这些缺陷将模限制在缺陷区域的横向上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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