Manne Jagadeeshwari, Lim Alan, Jäger Wolfgang, Tulip John
Electrical and Computer Engineering Department, University of Alberta, Edmonton, Alberta, Canada T6G 2V4.
Appl Opt. 2010 Oct 1;49(28):5302-8. doi: 10.1364/AO.49.005302.
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.
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。