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Generation of 10-GHz ultra-short pulses with low time jitter in an actively mode-locked fiber laser

机译:在有源锁模光纤激光器中产生具有低时间抖动的10 GHz超短脉冲

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摘要

We have experimentally achieved the 8.3-ps ultra-short pulse at 10 GHz repetition rate with the time jitter as low as 590 fs in an actively mode-locked fiber ring laser. The ring-cavity laser is mode-locked by a semiconductor optical amplifier based on cross-gain modulation. The external CW source is modulated with radio frequency signal by an amplitude modulator as the external optical pulses and, then, injected into the fiber ring cavity to achieve active mode locking. Further investigating the laser output characteristics, it indicates that the linewidth of employed CW source affects properties of the generated ultra-short pulse, such as phase noise and time jitter. Ultra-short pulse at high repetition rate with low time jitter can be generated by the optimization of CW laser source.
机译:在有源锁模光纤环形激光器中,我们已经以10 GHz的重复速率通过实验实现了8.3ps超短脉冲,其时间抖动低至590fs。环形腔激光器由基于交叉增益调制的半导体光放大器进行锁模。外部CW源通过振幅调制器作为外部光脉冲通过射频信号进行调制,然后注入光纤环腔中以实现有源模式锁定。进一步研究激光器的输出特性,表明所用的连续波光源的线宽会影响所产生的超短脉冲的特性,例如相位噪声和时间抖动。通过优化连续波激光光源,可以产生高重复率,低时间抖动的超短脉冲。

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