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基于一氧化碳的空心光纤拉曼激光器,在1.95微米处具有高脉冲能量。

CO-based hollow-core fiber Raman laser with high-pulse energy at 1.95  µm.

作者信息

Wang Yazhou, Schiess Olav Thorbjørn Sandberg, Amezcua-Correa Rodrigo, Markos Christos

出版信息

Opt Lett. 2021 Oct 15;46(20):5133-5136. doi: 10.1364/OL.438073.

Abstract

In this Letter, we present a high-pulse energy (>10µ) Raman laser at 1946 nm wavelength directly pumped with a 1533 nm custom-made fiber laser. The Raman laser is based on stimulated Raman scattering (SRS) in an 8 m carbon dioxide ()-filled nested anti-resonant hollow-core fiber. The low-energy phonon emission combined with the inherent SRS process along the low-loss fiber allows the generation of high-pulse energy up to 15.4 µJ at atmospheric pressure. The Raman laser exhibits good long-term stability and low relative intensity noise of less than 4%. We also investigate the pressure-dependent overlap of the Raman laser line with the absorption band of at the 2 µm spectral range. Our results constitute a novel, to the best of our knowledge, and promising technology towards high-energy 2 µm lasers.

摘要

在本信函中,我们展示了一种波长为1946 nm的高脉冲能量(>10µ)拉曼激光器,它由一台1533 nm的定制光纤激光器直接泵浦。该拉曼激光器基于在一根8 m长的充有二氧化碳()的嵌套式反谐振空心光纤中的受激拉曼散射(SRS)。低能量声子发射与沿低损耗光纤的固有SRS过程相结合,使得在大气压下能够产生高达15.4 µJ的高脉冲能量。该拉曼激光器具有良好的长期稳定性,相对强度噪声低于4%。我们还研究了在2 µm光谱范围内拉曼激光线与的吸收带的压力依赖性重叠。据我们所知,我们的结果构成了一种新颖且有前景的高能2 µm激光器技术。

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