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Development of a MEMS-Scale Photoacoustic Chemical Sensor Using a Quantum Cascade Laser

机译:量子级联激光器开发的MEMS级光声化学传感器

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摘要

The development of a microelectromechanical systems-scale photoacoustic chemical sensor is described. Specifically, both a pulsed and a modulated continuous wave quantum cascade laser were used to determine detection limits for dimethyl methylphosphonate (DMMP), a standard nerve gas simulant. These sources were continuously tunable from 9.3 to 10 ????????m. We report a minimum detection level of 20 parts-per-billion (ppb) and exceptional agreement between the measured photoacoustic vibrational spectrum and the IR spectrum of DMMP. The results support the continued development of a miniaturized photoacoustic sensor.
机译:描述了微机电系统规模的光声化学传感器的发展。具体而言,脉冲和调制连续波量子级联激光器均用于确定标准神经气体模拟物甲基膦酸二甲酯(DMMP)的检测极限。这些信号源可以从9.3m连续调谐到10m。我们报告的最低检测水平为十亿分之20(ppb),并且测得的光声振动光谱与DMMP的IR光谱之间具有出众的一致性。结果支持了微型光声传感器的持续发展。

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