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Raman laser amplifier in methane-filled hollow-core fiber

机译:甲烷填充空心光纤的拉曼激光放大器

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We report on an ultra-efficient 1.5 µm Raman amplifier in methane-filled negative curvature hollow-core fiber. A 1.5 µm tunable CW DFB seed laser is coupled into the fiber together with a 1064 mn pump laser using a shortpass dichromic mirror, and then stimulated amplified by Raman scattering of methane. The maximum Raman conversion efficiency of 66.4 % was obtained in the 2 bar methane gas filled, 2 m long hollow core fiber with 50 mW coupled pump power and 22.6 mW coupled seed laser power, and the corresponding quantum efficiency is as high as to 96.3 %, which almost approaches the quantum limit. The introduction of the single frequency seed laser not only reduced the Raman threshold from 17.5 mW to 9.5 mW, but also narrowed the Stokes linewidth from 3.4 GHz to 2.1 GHz with a factor of 60%. This kind of gas filled hollow core Raman amplifier can be a potential method to obtain low threshold, narrow linewidth and high efficiency mid infrared laser source in various application.
机译:我们报道了一种在甲烷填充负曲率空心光纤中的超高效1.5 µm拉曼放大器。使用短通双色镜将1.5 µm可调CW DFB种子激光器与1064 mn泵浦激光器一起耦合到光纤中,然后通过甲烷的拉曼散射进行放大。在填充了2 bar甲烷气体,2 m长的中空纤芯,耦合泵浦功率为50 mW和耦合种子激光功率为22.6 mW的情况下,最大拉曼转换效率为66.4%,相应的量子效率高达96.3% ,几乎接近量子极限。单频种子激光器的引入不仅将拉曼阈值从17.5 mW降低到9.5 mW,而且将Stokes线宽从3.4 GHz缩小到2.1 GHz,缩小了60%。这种充气空心拉曼放大器可能是一种在各种应用中获得低阈值,窄线宽和高效中红外激光源的潜在方法。

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