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首页> 外文期刊>Photonics Journal, IEEE >Optimization of Timing Jitter Reduction by Optical Feedback for a Passively Mode-Locked Laser
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Optimization of Timing Jitter Reduction by Optical Feedback for a Passively Mode-Locked Laser

机译:通过无源锁模激光器的光反馈优化时序抖动

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We investigate the effect of optical self-feedback on the timing jitter of a passively mode-locked (ML) laser and compare the von Linde method with two pure time domain methods for calculating the timing jitter of such a system. We find that all three methods yield the same dependence of the timing jitter on the external cavity roundtrip time (delay time). Of these methods, the so-called long term jitter method is significantly less computationally expensive. We therefore use this method to investigate the influence of the delay time, feedback strength, and amplitude-phase coupling on the timing jitter. Our results show that, with vanishing amplitude-phase coupling, greater timing jitter reduction can be achieved with long delay times and larger feedback strengths, when feedback is near resonance. Off resonance, the timing jitter is increased. Non-vanishing amplitude-phase coupling can lead to destabilized pulse stream, even at the feedback main resonances.
机译:我们研究了光学自反馈对被动锁模(ML)激光器的定时抖动的影响,并将von Linde方法与两种纯时域方法进行了比较,以计算这种系统的定时抖动。我们发现,所有这三种方法在外部腔往返时间(延迟时间)上都产生相同的时序抖动依赖性。在这些方法中,所谓的长期抖动方法在计算上要便宜得多。因此,我们使用这种方法来研究延迟时间,反馈强度和幅度相位耦合对时序抖动的影响。我们的结果表明,随着幅度相位耦合的消失,当反馈接近共振时,可以通过较长的延迟时间和更大的反馈强度来实现更大的时序抖动降低。在非共振状态下,定时抖动会增加。即使在反馈主共振时,幅度相位耦合的消失也可能导致脉冲流不稳定。

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