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Study of propagation modes of bent waveguides and micro-ring resonators by means of the Aperiodic Fourier Modal Method

机译:通过非周期性傅立叶模态方法研究弯曲波导和微环谐振器的繁殖模式

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In the last years, several numerical methods have been studied and applied to the analysis of high index contrast bent waveguides. Very often, the problem is treated using a conformal mapping, which translates the bending into an equivalent graded index profile and a straight waveguide. In this article, we discuss the implementation of a full vectorial 2D mode solver by means of the Aperiodic Fourier Modal Method, developed directly in cylindrical coordinates. This does not require the conformal mapping technique. In the first part of our work, we develop a shorthand notation and the mathematical rules useful to describe the problem in a matrix form. The calculation of propagation modes is then reconducted to the search of eigenvectors of a matrix. We will at first confront our formulation in 1D with results described in the literature. In a second time, we will use the complete 2D solver to determine the resonance frequencies and the quality factors of micro-ring resonators made on silicon surrounded by silica. These characteristics are indeed related to the real and imaginary parts of the propagation constants. By comparison with 3D-FDTD analysis, we will show that our implementation can be used to accurately describe the behavior of micro-rings having a bending radius as low as 1.1 pm in the near infrared region. This technique is general and can be applied to any micro-ring having an arbitrary cross-section and a quality factor which is less than 10000. Perspectives of this work include the study of the field propagation in a bent structure, as well as the coupling between micro-ring resonators and straight waveguides.
机译:在过去几年中,已经研究了几种数值方法,并应用于高折射率对比弯曲波导的分析。通常,使用一个共形映射处理问题,其将弯曲转换成等效分级索引轮廓和直波导。在本文中,我们通过直接在圆柱坐标中直接开发的非周期性傅立叶模态方法讨论全矢量图2D模式求解器的实现。这不需要保形映射技术。在我们工作的第一部分,我们开发了一种简写符号和有用的数学规则,用于描述矩阵形式的问题。然后,传播模式的计算被导电到搜索矩阵的特征向量。我们首先将在1D中对我们在文献中描述的结果的配方。在第二次,我们将使用完整的2D求解器来确定在由二氧化硅包围的硅中制造的微环谐振器的谐振频率和质量因素。这些特征实际上与传播常数的真实和虚部有关。通过与3D-FDTD分析进行比较,我们将表明,我们的实现可用于准确地描述近红外区域中具有低至1.1μm的弯曲半径的微环的行为。该技术是通用的,并且可以应用于具有小于10000的任意横截面的任何微环和质量因子。该工作的透视包括弯曲结构中的场传播的研究,以及耦合在微环谐振器和直波导之间。

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