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Three-dimensional finite difference beam propagation algorithms for photonic devices

机译:光子器件的三维有限差分光束传播算法

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摘要

Finite difference beam propagation techniques are developed for photonic devices with step-index distributions and arbitrarily large index differences. One technique, the eigenvector expansion method allows large propagation steps along uniform waveguide sections. The second technique, a propagation matrix series expansion method, is particularly suitable for three-dimensional wave propagation simulations. It can easily handle 10/sup 5/ discretization points on personal computers or workstations. The first method employs absorbing boundary conditions while the second utilizes transparent boundary conditions at the edges of the computational windows. The accuracy and applicability of these techniques is demonstrated for several 2-D and 3-D test structures.
机译:有限差分光束传播技术被开发用于具有阶跃折射率分布和任意大的折射率差异的光子器件。本征矢量扩展方法是一种技术,它允许沿着均匀的波导段进行较大的传播。第二种技术是传播矩阵级数展开法,特别适用于三维波传播模拟。它可以轻松处理个人计算机或工作站上的10 / sup 5 /离散点。第一种方法采用吸收边界条件,而第二种方法则使用计算窗口边缘的透明边界条件。这些技术的准确性和适用性已在几种2-D和3-D测试结构中得到证明。

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