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光纤中基于双宽带抽运的受激布里渊散射增益谱展宽及慢光传输中脉冲失真减小的理论研究
引用本文:王士鹤,任立勇,刘宇.光纤中基于双宽带抽运的受激布里渊散射增益谱展宽及慢光传输中脉冲失真减小的理论研究[J].物理学报,2009,58(6):3943-3948.
作者姓名:王士鹤  任立勇  刘宇
作者单位:(1)中国科学院西安光学精密机械研究所瞬态光学与光子技术国家重点实验室,西安 710119; (2)中国科学院西安光学精密机械研究所瞬态光学与光子技术国家重点实验室,西安 710119;中国科学院研究生院,北京 100049
基金项目:国家自然科学基金(批准号:60778020)资助的课题.
摘    要:分析了单模光纤中双宽带抽运的受激布里渊散射 (stimulated Brillouin scattering,SBS) 光速减慢效应.模拟了两高斯型宽带抽运光同时作用下的SBS增益谱和损耗谱,提出了一种获得均匀增益谱的方法.由于较强抽运光增益谱的中心频率与较弱抽运光损耗谱的中心频率相重合,通过调节较弱抽运光的功率和谱宽,能够部分地抵消掉较强增益谱的顶部从而构建出平坦的增益谱.研究了该平顶增益情形下信号脉冲畸变的性质.与单宽带抽运下脉冲畸变的对比表明,这种产生平顶增益谱的方法能有效地减小脉冲畸变. 关键词: 慢光 受激布里渊散射(SBS) 单模光纤 脉冲失真

关 键 词:慢光  受激布里渊散射(SBS)  单模光纤  脉冲失真
收稿时间:2008-01-24

Theoretical study on stimulated-Brillouin-scattering gain-spectrum broadening and pulse-distortion reduction of slow-light propagation using double broadband pump in optical fibers
Wang Shi-He,Ren Li-Yong,Liu Yu.Theoretical study on stimulated-Brillouin-scattering gain-spectrum broadening and pulse-distortion reduction of slow-light propagation using double broadband pump in optical fibers[J].Acta Physica Sinica,2009,58(6):3943-3948.
Authors:Wang Shi-He  Ren Li-Yong  Liu Yu
Abstract:We analyse the stimulated Brillouin scattering (SBS) slow light using double broadband pumps in a single mode fiber. A new SBS gain spectrum tailoring method is proposed using two Gaussian-shaped broadband pumps with different powers and spectral widths, and the central frequency interval of them is carefully set at two Brillouin frequency shifts to make sure that the gain of one pump has the same center with the loss of the other. The top of the gain spectrum of the strong pump beam can be counteracted by the loss spectrum of the weak pump beam to construct a flat top gain spectrum. We give the optimized conditions of the laser powers and spectral widths between two broadband pumps to obtain a flat gain. Distortions of signal pulse under this flat top gain are studied and compared with that obtained using a single broadband pump. We find that the flat top gain profile can effectively reduce the pulse distortions.
Keywords:slow light  stimulated Brillouin scattering (SBS)  single mode fiber  pulse distortion
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