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基于光纤四波混频波长转换和色散的慢光实验研究
引用本文:尹经禅,肖晓晟,杨昌喜. 基于光纤四波混频波长转换和色散的慢光实验研究[J]. 物理学报, 2010, 59(6): 3986-3991
作者姓名:尹经禅  肖晓晟  杨昌喜
作者单位:清华大学精密仪器与机械学系,精密测试技术与仪器国家重点实验室,北京 100084
基金项目:国家自然科学基金(批准号:60878007)资助的课题.
摘    要:对基于光纤四波混频(FWM)波长转换和色散的慢光实现进行了详细和系统的实验研究.首先,实验测定了高非线性光纤中FWM带宽约为40 nm,从而确定了慢光的可调谐带宽;接着,在普通单模光纤和色散补偿光纤(DCF)中针对500 MHz正弦信号和100 ps短脉冲信号分别实现了34和198 ns的脉冲延迟,在DCF中还实现了209 ns的脉冲提前.讨论了增大延迟量的方法,指出随着宽带FWM波长转换的实现和大色散光纤的应用有望获得微秒量级的大延迟量,从而为高性能光纤延迟线和全光缓存器等应用提供支持.关键词:慢光四波混频色散

关 键 词:慢光  四波混频  色散
收稿时间:2009-08-24

Experimental study of slow light based on four-wave mixing wavelength conversion and dispersion in optical fibers
Yin Jing-Chan,Xiao Xiao-Sheng,Yang Chang-Xi. Experimental study of slow light based on four-wave mixing wavelength conversion and dispersion in optical fibers[J]. Acta Physica Sinica, 2010, 59(6): 3986-3991
Authors:Yin Jing-Chan  Xiao Xiao-Sheng  Yang Chang-Xi
Affiliation:State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instruments, Tsinghua University, Beijing 100084, China;State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instruments, Tsinghua University, Beijing 100084, China;State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instruments, Tsinghua University, Beijing 100084, China
Abstract:Slow light based on four-wave mixing (FWM) wavelength conversion and dispersion is experimentally studied. The FWM bandwidth of the highly nonlinear fiber is measured to be 40 nm, which is also the slow light tunable bandwidth. A 3.4 ns delay of 500 MHz sine signal is achieved in standard single mode fiber, and 1.98 ns delay of short pulses with 100 ps width is achieved in dispersion compensation fiber (DCF). An advancement of 2.09 ns for the 100 ps short pulses is also achieved in the DCF. The method to increase the slow light delay is discussed, and large delay up to microseconds is expected when wideband FWM wavelength conversion and large dispersion fibers are used. The expected large delay will help us realize high efficiency fiber delay lines and all-fiber buffers.
Keywords:slow light  four-wave mixing  dispersion
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