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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Laser dynamics and relative timing jitter analysis of passively synchronized Er- and Yb-doped mode-locked fiber lasers
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Laser dynamics and relative timing jitter analysis of passively synchronized Er- and Yb-doped mode-locked fiber lasers

机译:被动同步掺Er和Yb锁模光纤激光器的动力学和相对时间抖动分析

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摘要

Passively synchronized Er-doped and Yb-doped mode-locked fiber lasers with a master-slave configuration are theoretically investigated based on the pulse propagation model for simulating pulse collision in the common fiber section and on the master equation model for simulating laser dynamics. Computational results indicate that the central optical frequency of the slave Er laser will be shifted by the significant cross phase modulation (XPM) effect for the laser to become synchronized with the injected master Yb laser pulse train. Pulse duration change caused by fiber dispersion in the common fiber section will distort the ideal anti-symmetric characteristics of the XPMinduced frequency shift versus the relative timing position of the two color pulses. The relative timing jitter noises of the two synchronized lasers can be minimized by adjusting the relative pulse timing position, and the predicted dependence agrees well with the experimental observation.
机译:基于用于模拟公共光纤段中脉冲碰撞的脉冲传播模型和用于模拟激光动力学的主方程模型,从理论上研究了具有主-从配置的无源同步Er掺杂和Yb掺杂锁模光纤激光器。计算结果表明,从属Er激光器的中心光学频率将因显着的交叉相位调制(XPM)效应而发生偏移,以使该激光器与注入的主Yb激光脉冲序列同步。由公共光纤部分中的光纤色散引起的脉冲持续时间变化将使XPM引起的频移相对于两个彩色脉冲的相对定时位置的理想反对称特性失真。可以通过调整相对脉冲定时位置来使两个同步激光器的相对定时抖动噪声最小化,并且所预测的依赖性与实验观察结果非常吻合。

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