Yang Fuhao, Gu Qiyan, Lin Yu, Wang Meng, Liu Minqiu, Ouyang Deqin, Wu Xu, Zhao Junqing, Guo Chunyu, Lue Qitao, Ruan Shuangchen
Opt Express. 2024 May 20;32(11):18539-18549. doi: 10.1364/OE.520944.
We present a nonlinear amplifying loop mirror-based mode-locked fiber laser. By adjusting the pump power, the proposed laser exhibits a dissipative soliton resonance (DSR)-like pulse operation with a maximum pulse width of 150 ns. Subsequently, a three-stage Tm-doped fiber amplifier is implemented using a single-mode double-cladding Tm-doped fiber to increase the DSR-like pulse output power to 52.5 W, achieving a pump slope efficiency of 47.1% in the main amplifier. A 25 m first-order Raman-gain fiber (UHNA7) is pumped by a DSR-like pulse, and 16.3 W of pure 2.135 µm first-order Raman light with a spectral purity of 73.4% is obtained. Finally, 5.4 W of 2.35 µm second-order Raman light with a spectral purity of 66% is obtained using a 10 m 98% germania-core fiber as a second-order Raman-gain fiber cascaded after UHNA7 fiber. To the best of our knowledge, this is the highest output power ever obtained from a 2.3 µm laser.
我们展示了一种基于非线性放大环镜的锁模光纤激光器。通过调节泵浦功率,所提出的激光器呈现出类似耗散孤子共振(DSR)的脉冲运转,最大脉冲宽度为150 ns。随后,使用单模双包层掺铥光纤实现了一个三级掺铥光纤放大器,将类似DSR的脉冲输出功率提高到52.5 W,主放大器中的泵浦斜率效率达到47.1%。用一个类似DSR的脉冲泵浦一根25 m的一阶拉曼增益光纤(UHNA7),获得了16.3 W光谱纯度为73.4%的纯2.135 µm一阶拉曼光。最后,使用一根10 m的98% 锗芯光纤作为二阶拉曼增益光纤,在UHNA7光纤之后级联,获得了5.4 W光谱纯度为66%的2.35 µm二阶拉曼光。据我们所知,这是从2.3 µm激光器获得的有史以来最高的输出功率。