Yang Xuezong, Zhang Lei, Jiang Huawei, Fan Tingwei, Feng Yan
Opt Express. 2015 Jul 27;23(15):19831-6. doi: 10.1364/OE.23.019831.
Active mode-locking of Raman fiber laser is experimentally investigated for the first time. An all fiber connected and polarization maintaining loop cavity of ~500 m long is pumped by a linearly polarized 1120 nm Yb fiber laser and modulated by an acousto-optic modulator. Stable 2 ns width pulse train at 1178 nm is obtained with modulator opening time of > 50 ns. At higher power, pulses become longer, and second order Raman Stokes could take place, which however can be suppressed by adjusting the open time and modulation frequency. Transient pulse evolution measurement confirms the absence of relaxation oscillation in Raman fiber laser. Tuning of repetition rate from 392 kHz to 31.37 MHz is obtained with harmonic mode locking.
首次对拉曼光纤激光器的主动锁模进行了实验研究。一个约500米长的全光纤连接且保偏的环形腔由线偏振1120纳米的镱光纤激光器泵浦,并由声光调制器进行调制。在调制器开启时间大于50纳秒时,获得了1178纳米处宽度为2纳秒的稳定脉冲序列。在更高功率下,脉冲会变长,并且可能会发生二阶拉曼斯托克斯效应,不过可以通过调整开启时间和调制频率来抑制这种效应。瞬态脉冲演化测量证实了拉曼光纤激光器中不存在弛豫振荡。通过谐波锁模实现了重复频率从392千赫兹到31.37兆赫兹的调谐。