Wang Yazhou, Hong Lujun, Zhang Cuiling, Wahlen Joseph, Antonio-Lopez J E, Dasa Manoj K, Adamu Abubakar I, Amezcua-Correa Rodrigo, Markos Christos
DTU Electro, Department of Electrical and Photonics Engineering, Technical University of Denmark, Kongens Lyngby, Denmark.
Institute of Space Science and Technology, Nanchang University, Nanchang, China.
Nat Commun. 2024 Nov 1;15(1):9427. doi: 10.1038/s41467-024-52589-8.
The synthesis of multiple narrow optical spectral lines, precisely and independently tuned across the near- to mid-infrared region, is a pivotal research area that enables selective and real-time detection of trace gas species within complex gas mixtures. However, existing methods for developing such light sources suffer from limited flexibility and very low pulse energy, particularly in the mid-infrared domain. Here, we introduce a concept that is based on the combination of an appropriate design of near-infrared fiber laser pump and cascaded configuration of gas-filled anti-resonant hollow-core fiber technology. This concept enables the synthesis of multiple independently tunable spectral lines, with >1 μJ high pulse energies and a few nanoseconds pulse width in the near- and mid-infrared regions. The number and wavelengths of the generated spectral lines can be dynamically reconfigured. A proof-of-concept laser beam synthesized of two narrow spectral lines at 3.99 µm and 4.25 µm wavelengths is demonstrated and combined with photoacoustic modality for real-time SO and CO detection. The proposed concept also constitutes a promising way for infrared multispectral microscopic imaging.
在近红外到中红外区域精确且独立地调谐合成多条窄光学光谱线,是一个关键的研究领域,它能够在复杂气体混合物中对痕量气体种类进行选择性实时检测。然而,现有的开发此类光源的方法灵活性有限且脉冲能量非常低,尤其是在中红外领域。在此,我们引入一种概念,该概念基于对近红外光纤激光泵浦的适当设计与充气反谐振空心光纤技术的级联配置相结合。这一概念能够在近红外和中红外区域合成多条独立可调谐的光谱线,具有大于1 μJ的高脉冲能量和几纳秒的脉冲宽度。所产生光谱线的数量和波长可以动态重新配置。展示了由波长为3.99 µm和4.25 µm的两条窄光谱线合成的概念验证激光束,并将其与光声模态相结合用于实时SO和CO检测。所提出的概念也是红外多光谱显微成像的一种有前景的方法。