Wang Zefeng, Gu Bo, Chen Yubin, Li Zhixian, Xi Xiaoming
Appl Opt. 2017 Sep 20;56(27):7657-7661. doi: 10.1364/AO.56.007657.
We report here for the first time, to the best of our knowledge, a 100-kW-peak-power, GHz-linewidth, sub-nanosecond, 1.9-μm laser source by gas stimulated Raman scattering (SRS) in hollow-core fiber. A H-filled, anti-resonance, hollow-core fiber is pumped with a sub-nanosecond, high-peak-power, 1064-nm microchip laser, generating a 1908-nm Stokes wave by vibrational SRS of H molecules. A maximum peak power of about 150 kW (average power 55 mW, pulse energy 55 μJ) is achieved with a 1.4-m fiber length and only 3 bar H pressure. The maximum quantum efficiency is about 54%, and the corresponding slope efficiency is about 37%. The linewidth of the Stokes wave is about 2 GHz, which decreases about 1-2 orders compared with the rare-earth-doped fiber lasers of the same peak-power level. Operation close to atmospheric pressure makes it more convenient in future applications. If a tunable pump laser is used, a high-peak-power, narrow-linewidth, broadly tunable, 2-μm fiber laser source can be easily achieved.
据我们所知,我们首次在此报告了一种通过空心光纤中的气体受激拉曼散射(SRS)产生的峰值功率为100千瓦、线宽为吉赫兹、亚纳秒级、波长为1.9微米的激光源。用亚纳秒级、高峰值功率的1064纳米微芯片激光器泵浦充氢的反谐振空心光纤,通过氢分子的振动SRS产生1908纳米的斯托克斯波。在光纤长度为1.4米且氢气压力仅为3巴的情况下,实现了约150千瓦的最大峰值功率(平均功率55毫瓦,脉冲能量55微焦)。最大量子效率约为54%,相应的斜率效率约为37%。斯托克斯波的线宽约为2吉赫兹,与相同峰值功率水平的掺稀土光纤激光器相比降低了约1 - 2个数量级。接近大气压的运行使得其在未来应用中更加便利。如果使用可调谐泵浦激光器,很容易实现高峰值功率、窄线宽、宽调谐的2微米光纤激光源。