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Midinfrared laser absorption spectroscopy in coiled hollow optical waveguides

机译:卷绕中空光波导中的中小三射激光吸收光谱

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A new nitric oxide (NO) sensor is intended for use in assessment of airway inflammation with applications in asthma diagnosis and management as well as in other health care applications involving inflammation in the gastrointestinal tract and the urogenital organs. The sensor was designed to measure trace quantities of NO in air using the combination of hollow optical waveguides and quantum cascade lasers. The primary application intended is analysis of exhaled breath. The unique marriage of the components and the novel design provides for rapid response to concentration changes while maintaining sensitive measurement capabilities. We achieved a lower detectable limit of 58.8 ppb of NO in N2 with a 0-90% response time of 0.48 s. The QC laser was operated at room temperature in pulsed current mode near 5.4μm. The hollow waveguide used to make these measurements was 9m in length and the inside diameter was 1000μm. The waveguide was coiled with a 15cm radius of curvature and perforated on the interior walls of the coils to allow gas to flow into and out of the waveguide. The sensor can easily be converted to measure other gases in the midinfrared by selecting a QC laser whose output is coincident with the absorption line of interest.
机译:新的一氧化氮(NO)传感器旨在评估哮喘诊断和管理中的应用以及涉及胃肠道和泌尿生殖器官炎症的其他医疗保健应用。该传感器被设计用于使用中空光波导和量子级联激光器的组合测量空气中的痕量。主要应用程序旨在分析呼出的呼吸。组件的独特婚姻和新颖的设计提供了快速响应浓度变化,同时保持敏感的测量能力。我们在N 2中达到58.8ppb的较低可检测极限,0-90%的响应时间为0.48秒。 QC激光器在室温下在脉冲电流模式下在5.4μm附近的室温下操作。用于使这些测量的空心波导长度为9m,内径为1000μm。波导用15cm的曲率半径盘绕,并在线圈的内壁上穿孔,以允许气体流入和移出波导。通过选择输出与感兴趣的吸收线重合的QC激光,可以容易地转换传感器以测量中中小程序中的其他气体。

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