光学
纤维
级联
激光器
材料科学
光纤
联轴节(管道)
芯(光纤)
光谱学
量子级联激光器
半径
物理
化学
复合材料
计算机安全
色谱法
量子力学
计算机科学
冶金
作者
Kamil Pierściński,Grzegorz Stępniewski,Mariusz Klimczak,Grzegorz Sobczak,Dominik Dobrakowski,Dorota Pierścińska,Dariusz Pysz,M. Bugajski,Ryszard Buczyński
标识
DOI:10.1109/jlt.2021.3062490
摘要
We report on experimental characterization of butt-coupling between a quantum cascade laser operating around the wavelength of 4.5 μm and a silica hollow core anti-resonant fiber. The used fiber has a single ring of non-touching capillaries surrounding a 42.5 μm dimeter air core and a mid-infrared transmission window in the wavelength range of 2.8 to 4.7 μm. A lens-less butt-coupling interconnection is established and coupling efficiency of 22% is achieved with over 100 mW of power at the fiber output. Bending losses in this test-bed system are verified depending on radius with the loss remaining below 1 dB/m for 20 mm loops, while bend losses exceeding 10 dB/m are observed when the fiber is bent down to a 5-mm radius. The presented coupling dramatically improves the output beam quality of the quantum cascade laser with a measured NA = 0.45. The beam at the fiber output has a circular shape, measured M 2 = 1.04 and uniform numerical aperture of NA = 0.13. Together with the hollow core fiber geometry, the proposed system would be suitable for simple implementations of absorption spectroscopy of popular atmospheric agents, like N 2 O.
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