Zhao Junqing, Ouyang Deqin, Zheng Zhijian, Liu Minqiu, Ren Xikui, Li Chunbo, Ruan Shuangchen, Xie Weixin
Opt Express. 2016 May 30;24(11):12072-81. doi: 10.1364/OE.24.012072.
In this paper, we first achieve nanosecond-scale dissipative soliton resonance (DSR) generation in a thulium-doped double-clad fiber (TDF) laser with all-anomalous-dispersion regime, and also first scale the average power up to 100.4 W by employing only two stage TDF amplifiers, corresponding to gains of 19.3 and 14.4 dB, respectively. It is noted that both the fiber laser oscillator and the amplification system employ double-clad fiber as the gain medium for utilizing the advantages in high-gain-availability, high-power-handling and good-mode-quality-maintaining. DSR mode-locking of the TDF oscillator is realized by using a nonlinear optical loop mirror (NOLM), which exhibits all-fiber-format, high nonlinear and passive saturable absorption properties. The TDF oscillator can deliver rectangular-shape pulses with duration ranging from ~3.74 to ~72.19 ns while maintaining a nearly equal output peak power level of ~0.56 W, namely peak power clamping (PPC) effect. Comparatively, the two stage amplifiers can scale the seeding pulses to similar average power levels, but to dramatically different peak powers ranging from ~0.94 to ~18.1 kW depending on the durations. Our TDF master-oscillator-power-amplifier (MOPA) system can provide a high power 2-μm band all-fiber-format laser source both tunable in pulse duration and peak power.
在本文中,我们首次在全反常色散区域的掺铥双包层光纤(TDF)激光器中实现了纳秒级耗散孤子共振(DSR)的产生,并且仅通过两级TDF放大器就首次将平均功率提升至100.4 W,两级放大器的增益分别为19.3 dB和14.4 dB。值得注意的是,光纤激光振荡器和放大系统均采用双包层光纤作为增益介质,以利用其在高增益可用性、高功率处理能力和良好模式质量保持方面的优势。TDF振荡器的DSR锁模是通过使用非线性光学环形镜(NOLM)实现的,该环形镜具有全光纤形式、高非线性和被动饱和吸收特性。TDF振荡器可以输出持续时间在3.74至72.19 ns范围内的矩形脉冲,同时保持接近相等的输出峰值功率水平0.56 W,即峰值功率钳位(PPC)效应。相比之下,两级放大器可以将种子脉冲放大到相似的平均功率水平,但根据脉冲持续时间不同,峰值功率会有显著差异,范围从0.94至~18.1 kW。我们的TDF主振荡功率放大(MOPA)系统可以提供一个高功率的2μm波段全光纤形式激光源,其脉冲持续时间和峰值功率均可调。