Gondal M A, Yamani Z H
Physics Department, Laser Research Laboratory, King Fahd University of Petroleum and Minerals, Box 372, Dhahran 31261, Saudi Arabia.
Appl Opt. 2007 Oct 10;46(29):7083-90. doi: 10.1364/ao.46.007083.
An ozone (O(3)) gas sensor with a sensitivity of parts per 10(9) (ppb) level and a high level of selectivity based on the resonant photoacoustic effect was developed using an electronically modulated cw CO(2) laser beam. Quite different from the standard chopper modulation of a laser beam, here the laser source was electronically modulated to overcome the inherent problem of frequency instability associated with chopper modulation. With electronic modulation, in conjunction with the fast Fourier transform (FFT) of transient signals, we were able to improve significantly the sensitivity of the photoacoustic (PA) system for the detection of O(3). In addition to the improved sensitivity, our method proved that the FFT of a laser modulated PA signal could suppress the noise signal generated by spurious window diffused absorption, which in the case of most commonly used lock-in techniques is rather unavoidable. The dependence of the PA signal on various experimental parameters such as buffer gas, laser power, modulation frequency, and trace gas concentration was investigated. In the case of buffer gas, argon proved to be more suitable than nitrogen and helium in terms of enhancing the sensitivity of the system. The limits of detection of O(3) using the 9 P(14) CO(2) laser line in our PA system are 5 parts per 10(9) by volume (ppbv) and 14 ppbv with electronic and standard chopper modulation, respectively. This detection limit of O(3) is quite applicable for detection of safe levels of O(3), at ground level.
基于共振光声效应,使用电子调制的连续波CO₂激光束开发了一种灵敏度达到十亿分之一(ppb)水平且具有高选择性的臭氧(O₃)气体传感器。与标准的激光束斩波调制截然不同,这里对激光源进行电子调制以克服与斩波调制相关的频率不稳定性这一固有问题。通过电子调制,结合瞬态信号的快速傅里叶变换(FFT),我们能够显著提高光声(PA)系统检测O₃的灵敏度。除了提高灵敏度外,我们的方法还证明,激光调制PA信号的FFT可以抑制由杂散窗口扩散吸收产生的噪声信号,而在大多数常用的锁相技术中,这种噪声信号是相当难以避免的。研究了PA信号对各种实验参数的依赖性,如缓冲气体、激光功率、调制频率和痕量气体浓度。在缓冲气体方面,就提高系统灵敏度而言,氩气被证明比氮气和氦气更合适。在我们的PA系统中,使用9P(14) CO₂激光线检测O₃的检测限分别为体积分数十亿分之五(ppbv)和电子调制及标准斩波调制下的14 ppbv。O₃的这种检测限非常适用于检测地面安全水平的O₃。