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Laser-based sensor for detection of hazardous gases in the air using waveguide CO_2 laser

机译:基于激光的传感器,使用波导CO_2激光检测空气中的有害气体

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A spectrometer based on the principle of photoacoustic spectroscopy has been developed recently at our laboratory for the detection of hazardous gases such as O_3, C_2H_4, SO_2, NO_2 and SF_6. In most of our earlier works, we employed a mechanical chopper to modulate the laser beam and this chopper modulation has the crucial disadvantage of instability in the chopper frequency. Even a minor shift of about 1 Hz in the modulation frequency could significantly reduce the photoacoustic signal by an order of magnitude at the acoustic resonant mode of the photoacoustic cell. To overcome this problem, we developed a photoacoustic spectrometer where a wave guided CW CO_2 laser beam is modulated electronically with the external frequency generator. Our preliminary results show that the electronic modulation of CO_2 laser beam improved the sensitivity of our spectrometer by a factor of 6. The parametric dependence of photoacoustic signal on laser power, modulation frequency and trace gas concentration, was investigated and the comparison between the two modulation techniques is presented in this paper for detection of trace gases such as C_2H_4.
机译:最近在我们的实验室中开发了一种基于光声光谱原理的光谱仪,用于检测有害气体,例如O_3,C_2H_4,SO_2,NO_2和SF_6。在我们的大多数早期工作中,我们使用机械斩波器来调制激光束,并且这种斩波器调制具有斩波器频率不稳定的关键缺点。在光声单元的声共振模式下,即使调制频率约1 Hz的微小变化也可以将光声信号显着降低一个数量级。为了克服这个问题,我们开发了一种光声光谱仪,其中通过外部频率发生器对波导CW CO_2激光束进行电子调制。我们的初步结果表明,CO_2激光束的电子调制将光谱仪的灵敏度提高了6倍。研究了​​光声信号对激光功率,调制频率和痕量气体浓度的参数依赖性,并比较了这两种调制之间的比较本文介绍了用于检测痕量气体(例如C_2H_4)的技术。

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