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首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Stretched-pulse mode-locking synchronously triggered by a femtosecond master laser at sub-megahertz repetition rate
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Stretched-pulse mode-locking synchronously triggered by a femtosecond master laser at sub-megahertz repetition rate

机译:飞秒主激光器以亚兆赫兹重复频率同步触发拉伸脉冲锁模

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摘要

A stretched-pulse mode-locked ytterbium-doped fiber laser was passively synchronized to a femtosecond Ti:sapphire laser at a low repetition rate of 240 kHz through large cross absorption modulation along additional 1-m-long erbium-doped fiber. The synchronous fiber laser with an ultra-long fiber cavity could produce not only nanosecond flat-top pulses with tunable pulse duration but also Gaussian-shape stretched pulses with its minimum pulse duration of ~450 ps as confirmed by cross-correlation measurement. When operating in the stretched pulse regime, the sub-nanosecond fiber laser could be synchronously triggered by the master injection with the cavity-length mismatch tolerance up to ~7.8 cm and timing jitter less than 400 fs, confirming that the stretched-pulse mode-locking of the ultra-long slave fiber laser could be robustly controlled by cross absorption modulation effects in the erbium-doped fiber with appropriate femtosecond master injection.
机译:通过沿着附加的1-m长的掺fiber光纤进行大的交叉吸收调制,将拉伸脉冲锁模掺-光纤激光器以240 kHz的低重复频率与飞秒Ti:蓝宝石激光器无源同步。互相关测量证实,具有超长光纤腔的同步光纤激光器不仅可以产生具有可调脉冲持续时间的纳秒级平顶脉冲,而且还可以产生最小脉冲持续时间约为450 ps的高斯形展宽脉冲。在拉伸脉冲状态下工作时,亚纳秒级光纤激光器可以由主注入同步触发,腔长失配容差最大可达7.8 cm,定时抖动小于400 fs,这证明了拉伸脉冲模式超长从属光纤激光器的锁定可以通过使用适当的飞秒主注入对掺b光纤中的交叉吸收调制效应进行鲁棒地控制。

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