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Gas Sensor Based on Photonic Crystal Fibres in the 2ν3 and ν2 + 2ν3 Vibrational Bands of Methane

机译:基于甲烷2ν3和ν2+2ν3振动带中的光子晶体光纤的气体传感器

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摘要

In this work, methane detection is performed on the 2ν3 and ν2 + 2ν3 absorption bands in the Near-Infrared (NIR) wavelength region using an all-fibre optical sensor. Hollow-core photonic bandgap fibres (HC-PBFs) are employed as gas cells due to their compactness, good integrability in optical systems and feasibility of long interaction lengths with gases. Sensing in the 2ν3 band of methane is demonstrated to achieve a detection limit one order of magnitude better than that of the ν2 + 2ν3 band. Finally, the filling time of a HC-PBF is demonstrated to be dependent on the fibre length and geometry.
机译:在这项工作中,使用全光纤光学传感器对近红外(NIR)波长区域中的2ν3和ν2+2ν3吸收带进行甲烷检测。中空光子带隙光纤(HC-PBFs)由于其紧凑性,在光学系统中的良好集成性以及与气体的长相互作用长度的可行性而被用作气室。甲烷的2ν3波段的传感被证明可以实现比ν2+2ν3波段的探测极限高一个数量级的检测极限。最后,证明HC-PBF的填充时间取决于纤维长度和几何形状。

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