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Mid-infrared laser absorption spectroscopy in coiled hollow optical waveguides

机译:盘绕空心光波导中的中红外激光吸收光谱

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This study discusses a sensor that relies on innovations in lasers, hollow waveguides, micromachining and microelectronics to provide sensitive and rapid measurements of trace gas concentrations. Quantum cascade (QC) distributed feedback semiconductor lasers in conjunction with unique flexible hollow waveguides that serve as a light guide and gas sample cell to produce a tunable mid-infrared (mid-IR) semiconductor laser absorption spectrometer (MIRLAS). This study uses wavelength modulation spectroscopy to provide measurements that are species specific to assure that measurements are relatively free of interference effects from other constituents of the sample stream. The small sample volumes presented by the hollow waveguide and a proprietary gas exchange mechanism provide for rapid response to gas concentration changes (> 1 s).
机译:这项研究讨论了一种传感器,该传感器依靠激光,空心波导,微机械加工和微电子学方面的创新来提供灵敏,快速的痕量气体浓度测量。量子级联(QC)分布式反馈半导体激光器与独特的柔性中空波导一起用作光导和气体样品池,以产生可调谐的中红外(mid-IR)半导体激光吸收光谱仪(MIRLAS)。这项研究使用波长调制光谱来提供特定于物种的测量,以确保测量相对不受样品流其他成分的干扰影响。中空波导和专有的气体交换机制提供的小样品量可快速响应气体浓度变化(> 1 s)。

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