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首页> 外文期刊>Journal of Lightwave Technology >Generation of a 4 /spl times/ 100 GHz pulse-train from a single-wavelength 10-GHz mode-locked laser using superimposed fiber Bragg gratings and nonlinear conversion
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Generation of a 4 /spl times/ 100 GHz pulse-train from a single-wavelength 10-GHz mode-locked laser using superimposed fiber Bragg gratings and nonlinear conversion

机译:使用叠加的光纤布拉格光栅和非线性转换,从单波长10 GHz锁模激光器产生4spls // 100 GHz脉冲序列

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摘要

In this paper, the design of a simple and practical repetition-rate multiplier based on superimposed-chirped fiber Bragg gratings (FBGs) is presented. A tenfold increase in the repetition rate of a mode-locked fiber source, by generating a 100-GHz optical pulse train from a 10-GHz train, is demonstrated experimentally. As compared with previous demonstrations, the superimposed FBG filter was specifically designed to decrease the duty cycle of the generated pulse train or, in other words, decrease the pulsewidth. In addition, a fiber nonlinear optical loop mirror (NOLM) is used to eliminate the pulse-to-pulse phase fluctuations in the output high-repetition-rate train and to achieve a wavelength-tunable transform-limited pulse sequence. Moreover, it is shown that nonlinear conversion using the NOLM can be used to simultaneously generate multiwavelength high-repetition-rate optical pulse trains (4 /spl times/ 100 GHz in the example shown here).
机译:本文提出了一种基于重叠chi光纤布拉格光栅(FBG)的简单实用的重复率乘法器的设计。实验证明了通过从10 GHz序列生成100 GHz光脉冲序列,锁模光纤源的重复率提高了十倍。与以前的演示相比,叠加式FBG滤波器经过专门设计,可以降低生成的脉冲序列的占空比,换句话说,可以降低脉冲宽度。此外,使用光纤非线性光学环形镜(NOLM)消除了输出高重复频率序列中的脉冲到脉冲相位波动,并获得了波长可调的变换限制脉冲序列。此外,已经表明,使用NOLM的非线性转换可用于同时生成多波长高重复率光脉冲序列(此处所示示例中为4 / spl次/ 100 GHz)。

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