Wang Meng, Gu Qiyan, Yang Fuhao, Ouyang Deqin, Chen Yewang, Zhao Junqing, Liu Xing, Guo Chunyu, Ruan Shuangchen
Opt Express. 2024 Apr 22;32(9):15658-15666. doi: 10.1364/OE.521326.
Here, we demonstrate a compact and efficient high-power mid-infrared supercontinuum (MIR-SC) laser source based on a tunable noise-like pulse (NLP) fiber laser system and a short section of single-mode germania-core fiber (GCF). The NLP all-polarization-maintaining fiber laser system can deliver the maximum output power of ∼30.6 W and a broadband spectrum (∼1.8-2.7 µm) with a compact single-stage fiber amplifier. By directly pumping only ∼6.5 cm-long GCF with a core diameter of ∼3.5 µm, a MIR-SC (spectral coverage of ∼1.5-3.3 µm) with a maximum power of ∼25.2 W and a power conversion efficiency ∼81.2% is obtained, which represent the highest power and efficiency in any single-mode GCF-based MIR-SCs, to the best of our knowledge. Our study contributes to the high-power MIR-SC laser source with compact all-fiber configuration, and will prompt its practical applications.
在此,我们展示了一种基于可调谐类噪声脉冲(NLP)光纤激光系统和一小段单模锗芯光纤(GCF)的紧凑高效高功率中红外超连续谱(MIR-SC)激光源。该NLP全保偏光纤激光系统通过紧凑的单级光纤放大器可实现约30.6 W的最大输出功率和宽带光谱(约1.8 - 2.7 µm)。通过直接泵浦仅约6.5 cm长、芯径约3.5 µm的GCF,获得了最大功率约25.2 W、功率转换效率约81.2%的MIR-SC(光谱覆盖约1.5 - 3.3 µm),据我们所知,这代表了基于任何单模GCF的MIR-SC中最高的功率和效率。我们的研究为具有紧凑全光纤结构的高功率MIR-SC激光源做出了贡献,并将推动其实际应用。