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周期色散管理波分复用系统中交叉相位调制边带不稳定性理论分析
引用本文:李齐良,孙丽丽,陈均朗,李庆山,唐向宏,钱胜,林理彬.周期色散管理波分复用系统中交叉相位调制边带不稳定性理论分析[J].物理学报,2007,56(2):805-810.
作者姓名:李齐良  孙丽丽  陈均朗  李庆山  唐向宏  钱胜  林理彬
作者单位:(1)杭州电子科技大学通信工程学院通信与系统研究所光纤通信实验室,杭州 310018; (2)四川大学物理科学与技术学院,成都 610064
摘    要:色散管理是在波分复用系统中, 周期地使用色散符号相反的光纤,使总的路径平均色散系数接近于零,系统中的色散就得到了补偿的一种技术.研究了波分复用集总放大色散管理系统中交叉相位调制的不稳定性,解析和数值研究表明,当路经平均色散系数表现为反常色散时,存在多阶边带;当路经平均色散系数表现为正常色散时,解析研究表明只存在最低阶边带,数值模拟显示噪声谱中最低阶边带噪声谱功率最强,解析和数值研究得到的结论一致. 关键词: 色散管理 波分复用 边带不稳定性

关 键 词:色散管理  波分复用  边带不稳定性
文章编号:1000-3290/2007/56(02)/0805-06
收稿时间:2006-05-18
修稿时间:9/8/2006 12:00:00 AM

Theoretical analysis of cross-phase modulational sideband instability in wavelength-division multiplexed system with periodic dispersion managed fiber links
Li Qi-Liang,Sun Li-Li,Chen Jun-Lang,Li Qing-Shan,Tang Xiang-Hong,Qian Sheng,Lin Li-Bin.Theoretical analysis of cross-phase modulational sideband instability in wavelength-division multiplexed system with periodic dispersion managed fiber links[J].Acta Physica Sinica,2007,56(2):805-810.
Authors:Li Qi-Liang  Sun Li-Li  Chen Jun-Lang  Li Qing-Shan  Tang Xiang-Hong  Qian Sheng  Lin Li-Bin
Institution:Optical Fiber Communication Laboratory, Institute of Communication and Information System, School of Communication, Hangzhou University , Hangzhou 310018, Chiha; Institute of Physics Science of Technology , Sichuan University, Chengdu 610064, China
Abstract:Dispersion management is a technology that alternately and periodically uses fibers with opposite dispersion sign in wavelength-division multiplexing link, thus the path averaged dispersion coefficient over each period is close to zero. This paper studies the cross-phase modulational sideband instability in chain of periodic dispersion managed and lumped amplified fiber link. Analytisis and numerical simulation are applied to show that there are multi-sidebands in the dispersion managed fiber link if the path averaged dispersion exhibits the abnormal dispersion, while there is only the lowest order if the path averaged dispersion exhibits the normal dispersion. The results of analytical and numerical simulation methods are consistent.
Keywords:dispersion management  wavelength-division multiplexing  sideband instability
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