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高阶FDTD法分析电-大尺寸光波导器件
引用本文:孔繁敏,李康,郭毅峰.高阶FDTD法分析电-大尺寸光波导器件[J].光电子.激光,2004,15(6):671-674,678.
作者姓名:孔繁敏  李康  郭毅峰
作者单位:山东大学信息科学与工程学院,济南,250100
基金项目:山东大学青年基金(11170051310029)的资助。
摘    要:高阶时域有限差分(FDTD)法用于电-大尺寸平面光波导器件的时域分析,实现了高阶FDTD法的理想匹配层(PML)吸收边界条件;研究了高阶FDTD法的数值色散特性,并对平行介质带定向耦合器进行了数值模拟,所得结果与解析解非常一致。

关 键 词:高阶时域有限差分法  FDTD  时域分析  光波导器件  理想匹配层  吸收边界条件  数值色散特性  定向耦合器  数值模拟  平行介质带  PML
文章编号:1005-0086(2004)06-0671-04

Analysis of Electrically-large Optical Waveguide Devices Using High-order FDTD Method
KONG Fan-min,LI Kang,GUO Yi-feng.Analysis of Electrically-large Optical Waveguide Devices Using High-order FDTD Method[J].Journal of Optoelectronics·laser,2004,15(6):671-674,678.
Authors:KONG Fan-min  LI Kang  GUO Yi-feng
Affiliation:KONG Fan-min~*,LI Kang,GUO Yi-feng
Abstract:The finite difference time domain(FDTD) method with high-order approximate was introduced to the time-domain analysis of electrically-large planar optical waveguide devices.The perfectly matched layers(PML) absorbing boundary condition for higher-order FDTD method has been implemented and the numerical dispersion of this scheme was studied.The numerical simulations for the parallel-slab directional coupler were presented and the computing results using this scheme are in highly accordance with analytical solutions.Compared with conventional FDTD method,this scheme could save considerable computational resource without sacrificing solution accuracy and especially could be applied in the computer-aided design and analysis of electrically-large optical devices.
Keywords:high-order finite difference time domain(FDTD) method  electrically-large perfectly matched layers  numerical dispersion
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