Lin Cheng, Zhu Yong, Wei Wei, Zhang Jie, Tian Li, Xu Zu-Wen
College of Optoelectronic Engineering of Chongqing University, Chongqing 400044, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2013 May;33(5):1163-6.
An all-optical quartz-enhanced photoacoustic spectroscopy system, based on the F-P demodulation, for trace gas detection in the open environment was proposed. In quartz-enhanced photoacoustic spectroscopy (QEPAS), an optical fiber Fabry-Perot method was used to replace the conventional electronic demodulation method. The photoacoustic signal was obtained by demodulating the variation of the Fabry-Perot cavity between the quartz tuning fork side and the fiber face. An experimental system was setup. The experiment for detection of water vapour in the open environment was carried on. A normalized noise equivalent absorption coefficient of 2.80 x 10(-7) cm(-1) x W x Hz(-1/2) was achieved. The result demonstrated that the sensitivity of the all-optical quartz-enhanced photoacoustic spectroscopy system is about 2.6 times higher than that of the conventional QEPAS system. The all-optical quartz-enhanced photoacoustic spectroscopy system is immune to electromagnetic interference, safe in flammable and explosive gas detection, suitable for high temperature and high humidity environments and realizable for long distance, multi-point and network sensing.
提出了一种基于F-P解调的全光石英增强光声光谱系统,用于开放环境中的痕量气体检测。在石英增强光声光谱(QEPAS)中,采用光纤法布里-珀罗方法替代传统的电子解调方法。通过解调石英音叉侧与光纤端面之间法布里-珀罗腔的变化来获取光声信号。搭建了实验系统,进行了开放环境中水蒸气检测的实验,实现了归一化噪声等效吸收系数为2.80×10(-7) cm(-1)×W×Hz(-1/2)。结果表明,全光石英增强光声光谱系统的灵敏度比传统QEPAS系统高约2.6倍。该全光石英增强光声光谱系统不受电磁干扰,在易燃易爆气体检测中安全,适用于高温高湿环境,可实现远距离、多点和网络化传感。