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长周期光纤光栅折射率特性仿真的新方法
引用本文:欧启标,覃溪,张超,曾庆科,秦子雄,李传起. 长周期光纤光栅折射率特性仿真的新方法[J]. 光学技术, 2012, 38(1): 60-63
作者姓名:欧启标  覃溪  张超  曾庆科  秦子雄  李传起
作者单位:广西师范大学电子工程学院;广西工学院鹿山学院电子信息与控制工程系;广西师范大学物理科学与技术学院
基金项目:广西教育厅自然基金项目(20101MS018)
摘    要:基于长周期光纤光栅的模式耦合机理,提出一种快速模拟长周期光纤光栅折射率特性的方法。该方法在计算包层模式的有效折射率时分开计算,在环境折射率小于包层折射率时采用二分法和分步搜索法结合计算包层模式的有效折射率,在环境折射率大于包层折射率时采用Nelder-Mead加分步搜索法求解包层模式的有效折射率。在应用谐振波长的决定式求解与环境折射率的匹配的谐振波长时,采用变区间应用二分法求解而不是传统的逐步搜索法求解谐振波长。数值结果与实验结果做了对比,两者基本一致。实践证明,该方法方便快捷,比一般的方法速度提高7倍以上。

关 键 词:长周期光纤光栅(LPFG)  谐振波长  二分法  有效折射率
收稿时间:2011-08-29

A new method of simulation of LPFG refractive index characteristics
OU Qibiao,QIN Xi,ZHANG Chao,ZENG Qingke,QIN Zixiong,LI Chuanqi. A new method of simulation of LPFG refractive index characteristics[J]. Optical Technique, 2012, 38(1): 60-63
Authors:OU Qibiao  QIN Xi  ZHANG Chao  ZENG Qingke  QIN Zixiong  LI Chuanqi
Affiliation:1(1.College of Electronic Engineering,Guangxi Normal University,Guilin 541004,China)(2.Department of Electronic Information & Control Engineering Lushan College of Guanxi University of Technology,Liuzhou 545616,China)(3.College of Physical Science and Technology, Guangxi Normal University,Guilin 541004,China)
Abstract:Based on the coupled-mode theory,a new method of simulating LPFG refractive index characteristics rapidly is introduced.With this method,the effective refractive index of cladding modes is calculated separately.Dichotomy is adopted when the circumstance refractive index is less than the cladding index,while Nelder-Mead is applied to obtain the effective refractive index of cladding modes when the circumstance refractive index is greater than the cladding index.When solving resonant wavelength with the phase-matching formula,the method changes the search range and uses the dichotomy instead of the traditional step by step search method to obtain the resonant wavelength.The results are also the same with comparison to the experimental outcome.This method is proved to be swifter,somewhat seven times faster than the ordinary ways.
Keywords:long period fiber grating(LPFG)  resonant wavelength  dichotomy  effective refractive index
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