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超高斯啁啾光脉冲在单模光纤中传输的演化行为
引用本文:郭仿军,夏光琼,林晓东,吴正茂.超高斯啁啾光脉冲在单模光纤中传输的演化行为[J].四川激光,2007,28(4):54-55.
作者姓名:郭仿军  夏光琼  林晓东  吴正茂
作者单位:西南大学物理学院,西南大学物理学院,西南大学物理学院,西南大学物理学院 重庆 400715,重庆文理学院物理与信息工程系,重庆 永川 402168,重庆 400715,重庆 400715,重庆 400715
摘    要:本文从激光脉冲在单模光纤中传输所满足的非线性薛定谔方程出发,通过分步傅里叶变换方法,数值研究了超高斯啁啾光脉冲在单模光纤中脉冲形状的演化.研究表明,超高斯脉冲在单模光纤中传输将经历一个从近平顶、多峰、最后到单峰的演变过程,且高阶色散将引起脉冲形状发生畸变;在GVD和SPM效应的共同作用下,无啁啾的超高斯脉冲在特定条件下将出现孤子演变,具有正啁啾的超高斯脉冲在传输的初始阶段,脉冲形状的变化非常剧烈,而由于负初始啁啾减弱了非线性与色散效应引起的频率啁啾,所以其脉冲波形的变化平缓一些.研究表明,SPM产生的啁啾对入射脉冲的初始啁啾有一定的补偿作用.

关 键 词:超高斯脉冲  单模光纤  群速度色散  自位相调制  啁啾  超高斯脉冲  啁啾光脉冲  单模光纤  传输  演化行为  optical  fiber  optical  pulse  characteristics  补偿作用  入射脉冲  平缓  脉冲波形  频率啁啾  色散效应  初始啁啾  变化  初始阶段  演变过程  孤子  特定条件
文章编号:0253-2743(2007)04-0054-02
修稿时间:2007-02-05

Transmission characteristics of Chirped super-Gaussian optical pulse in the single-mode optical fiber
GUO Fang-jun,XIA Guang-qiong,LIN Xiao-dong,WU Zheng-mao.Transmission characteristics of Chirped super-Gaussian optical pulse in the single-mode optical fiber[J].Laser Journal,2007,28(4):54-55.
Authors:GUO Fang-jun  XIA Guang-qiong  LIN Xiao-dong  WU Zheng-mao
Affiliation:1. School of Physics, Southwest University, Chongqing 400715, China; 2. Department of Physics and Information Engineering, Chongqing University of Arts and Sciences, Yongchuan, Chongqing 402168, China
Abstract:Based on the nonlinear Schrodinger equation,the evolution of chirped super-Ganssian optical pulse propagating in the single-mode fiber has been investigated numerically by split-step Fourier method.The results show that super-Gaussian pulse's shape undergoes a variation from near-rectangular, multi-peak,and finally to single-peak,and the shape of pulse deform when high-order dispersion is considered.On the effects of GVD and SPM,super- Gaussian pulse which has no chirp becomes soliton at given conditions,and the shape of which has positive chh-p deforms extremely at beginning of propagation, but gently for which has negative chirp.Furthermore,chirp caused by SPM compensates the initial chirp of input pulse in some degree.
Keywords:super-Gaussian pulse  single-mode optical fiber  group-velocity dispersion  self-phase modulation  chirp
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