Opt Express. 2023 Feb 13;31(4):6741-6749. doi: 10.1364/OE.481650.
A high-efficiency Raman conversion from 1.987 µm to 2.177 µm is demonstrated experimentally in 45 m GeO-doped silica fiber, adopting a dissipative soliton resonance (DSR) rectangular pulse as the pump. Over the entire spectral distribution, the spectral purity of the first-order Raman pulse is up to 96.8%, suggesting a nearly complete pump depletion before the onset of cascaded Raman shifts. The corresponding pump-to-Raman conversion efficiency of 67.4% is the highest up to date in this spectral region. Meanwhile, a large Raman pulse energy of 1.03 µJ was obtained at the repetition rate near MHz level, corresponding to 0.893 W average power. In the total output, the Raman-dominated spike has a Full Width Half Maximum (FWHM) of 1.18 ns far narrower than DSR's pulse duration of 10.25 ns. The results indicate that DSR is a promising candidate for developing efficient Raman nanosecond pulse fiber laser in mid-infrared (MIR) region.
实验中在 45m 的掺锗石英光纤中实现了从 1.987μm 到 2.177μm 的高效拉曼转换,采用耗散孤子共振(DSR)矩形脉冲作为泵浦源。在整个光谱分布中,一阶拉曼脉冲的光谱纯度高达 96.8%,这表明在级联拉曼位移开始之前,泵浦几乎完全耗尽。在该光谱区域中,对应的 67.4%的泵浦到拉曼转换效率是迄今为止最高的。同时,在接近 MHz 级别的重复率下获得了 1.03µJ 的大拉曼脉冲能量,对应的平均功率为 0.893W。在总输出中,拉曼主导的尖峰的半峰全宽(FWHM)为 1.18ns,远小于 DSR 的 10.25ns 脉冲持续时间。结果表明,DSR 是在中红外(MIR)区域开发高效拉曼纳秒脉冲光纤激光器的有前途的候选者。