Huang Kun, Zeng Jing, Gan Jiwei, Hao Qiang, Yan Ming, Zeng Heping
Opt Express. 2018 Nov 26;26(24):32184-32193. doi: 10.1364/OE.26.032184.
We have proposed and implemented for the first time to our knowledge a passive and all-optical pulse synchronization for polarization-maintaining fiber lasers. Specifically, the synchronization system was comprised of two independent Yb-doped and Er-doped mode-locked fiber lasers in a master-slave configuration. Master pulses were injected into the slave laser cavity consisting of a nonlinear amplifying loop mirror, which provided an effective fast intensity modulator due to the periodic introduction of nonreciprocal phase difference. As a result, robust and tight timing synchronization was achieved with a cavity mismatch tolerance of 800 µm and a relative timing jitter of 26 fs within 1-MHz bandwidth. In combination with the all-polarization-maintaining structure of fiber lasers, long-term stable operation was demonstrated over 12 hours without the need for temperature stabilization and vibration isolation. The implemented synchronous laser system could find immediate applications such as pump-probe microscopy, two-color spectroscopy and nonlinear frequency mixing.
据我们所知,我们首次提出并实现了用于保偏光纤激光器的被动全光脉冲同步。具体而言,同步系统由两个主从配置的独立掺镱和掺铒锁模光纤激光器组成。主脉冲注入到由非线性放大环形镜构成的从激光腔中,由于周期性引入非互易相位差,该环形镜提供了有效的快速强度调制器。结果,实现了稳健且紧密的定时同步,腔失配容限为800 µm,在1-MHz带宽内相对定时抖动为26 fs。结合光纤激光器的全保偏结构,在无需温度稳定和隔振的情况下,证明了其可长期稳定运行12小时以上。所实现的同步激光系统可立即应用于诸如泵浦 - 探测显微镜、双色光谱和非线性频率混合等领域。