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Spectroscopy in the gas phase with GaAs/AlGaAs quantum-cascade lasers

机译:GaAs / AlGaAs量子级联激光器的气相光谱

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We demonstrate what we believe is the first application of the recently developed electrically pumped GaAs/AlGaAs quantum-cascade lasers in a spectroscopic gas-sensing system by use of hollow waveguides. Laser light with an emission maximum at 10.009 μm is used to investigate the midinfrared absorption of ethene at atmospheric pressure. We used a 434-mm-long silver-coated silica hollow waveguide as a sensing element, which served as a gas absorption cell. Different mixtures of helium and ethene with known concentrations are flushed through the waveguide while the laser radiation that passes through the waveguide is analyzed with a Fourier-transform infrared spectrometer. The experimentally obtained discrete ethene spectrum agrees well with the calculated spectrum. A detection threshold of 250 parts per million is achieved with the current setup.
机译:我们证明了我们相信的是,最近开发的电泵浦GaAs / AlGaAs量子级联激光器通过空心波导在光谱气体传感系统中的首次应用。发射最大值为10.009μm的激光用于研究大气压下乙烯的中红外吸收。我们使用434毫米长的涂银二氧化硅空心波导作为传感元件,用作气体吸收池。已知浓度的氦和乙烯的不同混合物通过波导冲洗,同时通过傅立叶变换红外光谱仪分析通过波导的激光辐射。实验获得的离散乙烯光谱与计算光谱非常吻合。使用当前设置,检测阈值为百万分之250。

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