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基于类噪声脉冲和锗光纤的紧凑型高效高功率中红外超连续谱光纤激光源

Compact and efficient high-power mid-infrared supercontinuum fiber laser source based on a noise-like pulse and germania fiber.

作者信息

Wang Meng, Gu Qiyan, Yang Fuhao, Ouyang Deqin, Chen Yewang, Zhao Junqing, Liu Xing, Guo Chunyu, Ruan Shuangchen

出版信息

Opt Express. 2024 Apr 22;32(9):15658-15666. doi: 10.1364/OE.521326.

Abstract

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.

摘要

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。

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