吉林大学学报(信息科学版) ›› 2014, Vol. 32 ›› Issue (1): 8-13.

• 论文 • 上一篇    下一篇

六边形结构光子晶体光纤的色散特性研究

支孟轩, 何晓东, 赵文心   

  1. 吉林大学 通信工程学院, 长春 130012
  • 收稿日期:2013-05-02 出版日期:2014-01-24 发布日期:2014-04-03
  • 作者简介:支孟轩(1988—), 男, 北京人, 吉林大学硕士研究生, 主要从事全光通信及关键器件、 光子晶体器件研究, (Tel)86-18888841614(E-mail)84092832@qq.com; 通讯作者: 何晓东(1963—), 女, 长春人, 吉林大学教授, 硕士生导师, 主要从事全光通信网的关键技术和器件以及光子晶体及器件研究, (Tel)86-13069003226(E-mail)hexiaodong220@163.com。
  • 基金资助:

    长春市国际合作科技计划基金资助项目(2009GH12)

Research on Dispersion Properties of Photonic Crystal Fiber with Hexagonal Structure

ZHI Meng-xuan, HE Xiao-dong, ZHAO Wen-xin   

  1. College of Communication Engineering, Jilin University, Changchun 130012, China
  • Received:2013-05-02 Online:2014-01-24 Published:2014-04-03

摘要:

为解决传统色散补偿光纤补偿带宽小及所需光纤长度大的问题, 利用平面波展开法, 通过改变空气孔孔径及分布周期得到不同结构光纤的色散曲线, 为色散补偿光纤的制作提供理论依据。研究结果表明, 对于普通六边形结构光子晶体光纤, 减小空气孔孔径及增大空气孔分布周期可减小短波段光信号的色散值, 同时长波段光信号色散值随之增大。引入双芯结构后, 在长波段可产生大负色散, 并且通过减小空气孔分布面积能使色散曲线趋于平坦, 可作为宽带色散补偿光纤。

关键词: 光子晶体光纤, 色散特性, 平面波展开法, 色散补偿

Abstract:

The bandwidth limitations and the low dispersion value of conventional dispersion compensating optical fiber make it not conducive to production of the dispersion compensating optical fiber. In order to solve this problem, using the plane wave method, the dispersion curves of fibers with different structures have been obtained, which gives the theoretical guidance for the production of dispersion compensation fiber. Results show that for the ordinary photonic crystal fiber with hexagonal structure, the dispersion value for short-wave-length optical signal can be reduced and the long one can be increased by reducing the air hole diameter or increasing the air hole interval. Large negative dispersion value can be obtained at long wavelength by using the dual-core structure, and flatten the dispersion curve if reduce the distribution area of the air holes, the fibers with flat dispersion curves can be used as a broadband dispersion compensating fiber.

Key words: photonic crystal fiber(PCF), dispersion characteristics, plane wave method, dispersion compensation

中图分类号: 

  • TN248