Zhao Hui, Tu Zhi-Hua, Dai Shi-Bo, Zhu Si-Qi, Yin Hao, Li Zhen, Chen Zhen-Qiang
Opt Lett. 2020 Dec 15;45(24):6715-6718. doi: 10.1364/OL.415678.
A single-longitudinal-mode crystalline Raman laser in the 1.7 µm wave band was reported for the first time, to the best of our knowledge. The Raman laser, which was intracavity-pumped by an actively -switched 1314 nm Nd:YLF laser, demonstrated the cascaded Stokes oscillation at 1715 nm. By inserting an etalon in the fundamental resonator, linewidth narrowing and power scaling of the second-Stokes laser were realized based on the spatial-hole-burning-free Raman gain. With an optimal pulse repetition frequency of 4 kHz, the maximum single-longitudinal-mode average output power of 1.8 W was acquired with the spectrum linewidth of ∼340. Further increasing the incident pump power, the second-Stokes laser transitioned to multimode regime, and the maximum average output power reached 2.7 W with the peak power as high as ∼380.
据我们所知,首次报道了一种工作在1.7μm波段的单纵模晶体拉曼激光器。该拉曼激光器由主动调Q的1314nm Nd:YLF激光器腔内泵浦,实现了1715nm的级联斯托克斯振荡。通过在基本谐振腔中插入一个标准具,基于无空间烧孔拉曼增益实现了第二斯托克斯激光的线宽变窄和功率放大。在4kHz的最佳脉冲重复频率下,获得了最大单纵模平均输出功率1.8W,光谱线宽约为340。进一步增加入射泵浦功率,第二斯托克斯激光转变为多模状态,最大平均输出功率达到2.7W,峰值功率高达约380。