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40 GHz pulse source based on cross-phase modulation-induced focusing in normally dispersive optical fibers

机译:基于正交相位调制引起的正常色散光纤聚焦的40 GHz脉冲源

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摘要

We theoretically and experimentally investigate the design of a high-repetition rate source delivering well-separated optical pulses due to the nonlinear compression of a dual-frequency beat signal within a cavity-less normally dispersive fiber-based setup. This system is well described by a set of two coupled nonlinear Schrodinger equations for which the traditional normally dispersive defocusing regime is turned in a focusing temporal lens through a degenerated cross-phase modulation process (XPM). More precisely, the temporal compression of the initial beating is performed by the combined effects of normal dispersion and XPM-induced nonlinear phase shift provided by an intense beat signal on its weak out-of-phase replica co-propagating with orthogonal polarizations. This adiabatic reshaping process allows us to experimentally demonstrate the generation of a 40 GHz well-separated 3.3 ps pulse train at 1550 nm in a 5 km long normally dispersive fiber. (C) 2016 Optical Society of America
机译:我们在理论上和实验上研究了由于在无腔,通常基于色散的光纤环境中对双频拍频信号进行非线性压缩而提供高分离率光脉冲的高重复频率源的设计。该系统由一组两个耦合的非线性Schrodinger方程很好地描述,对于这些方程,传统的正常色散离焦机制通过退化的交叉相位调制过程(XPM)在聚焦时域透镜中转换。更精确地,初始拍击的时间压缩是通过正常色散和XPM诱导的非线性相移的组合效应来执行的,该非线性相移由强拍信号在其弱正交反相共相复制品上提供。绝热整形过程使我们能够通过实验证明在5 km长的正常色散光纤中在1550 nm处产生40 GHz分离良好的3.3 ps脉冲序列。 (C)2016美国眼镜学会

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