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基于脉冲量子级联激光器的离轴腔增强光谱技术用于氨和乙烯的灵敏检测。

Off-axis cavity enhanced spectroscopy based on a pulsed quantum cascade laser for sensitive detection of ammonia and ethylene.

作者信息

Manne Jagadeeshwari, Lim Alan, Jäger Wolfgang, Tulip John

机构信息

Electrical and Computer Engineering Department, University of Alberta, Edmonton, Alberta, Canada T6G 2V4.

出版信息

Appl Opt. 2010 Oct 1;49(28):5302-8. doi: 10.1364/AO.49.005302.

Abstract

A pulsed, distributed feedback (DFB) quantum cascade (QC) laser centered at 970 cm(-1) was used in combination with an off-axis cavity enhanced absorption (CEA) spectroscopic technique for the detection of ammonia and ethylene. Here, the laser is coupled into a high-finesse cavity with an optical path length of ∼76 m. The cavity is installed into a 53 cm long sample cell with a volume of 0.12 L. The laser is excited with short current pulses (5-10 ns), and the pulse amplitude is modulated with an external current ramp, resulting in a ∼0.3 cm(-1) frequency scan. A demodulation approach followed by numerical filtering was utilized to improve the signal-to-noise ratio. We demonstrated detection limits of ~15 ppb and ∼20 ppb for ammonia and ethylene, respectively, with less than 5 s averaging time.

摘要

采用中心波长为970 cm⁻¹的脉冲分布反馈(DFB)量子级联(QC)激光器,并结合离轴腔增强吸收(CEA)光谱技术来检测氨和乙烯。在此,激光器耦合到一个光程长度约为76 m的高精细度腔中。该腔安装在一个53 cm长、体积为0.12 L的样品池中。激光器由短电流脉冲(5 - 10 ns)激发,脉冲幅度通过外部电流斜坡进行调制,从而实现约0.3 cm⁻¹的频率扫描。采用解调方法并结合数值滤波来提高信噪比。我们证明,在平均时间小于5 s的情况下,氨和乙烯的检测限分别约为15 ppb和20 ppb。

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