Trace gas detection device and method based on intermediate infrared quantum cascade laser direct absorption spectrum method
A technology of absorption spectroscopy and quantum cascade, which is applied to the trace gas detection device and field based on mid-infrared quantum cascade laser direct absorption spectroscopy, can solve the problem of the late start of the study of stable isotope ratio, and achieve simple structure, The effect of high detection sensitivity and high signal-to-noise ratio
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[0024] see figure 1 , 2. Light source 1 selects a tunable quantum cascade laser with high beam quality, high power, and narrow linewidth, and selects the measurement band and specific working parameters according to the spectral line characteristics of the measured gas. The outgoing infrared beam is collimated near-parallel light. Directly adjusting the screw on the outer package of the laser can adjust the propagation direction of the infrared beam, but this operation requires extremely high rotation accuracy and has a low safety factor. In order to adjust and calibrate the infrared beam more conveniently, avoid human misoperation and frequently adjust the laser, two plane reflectors 2 and 3 are added outside the infrared light exit hole, so that the beam can be adjusted in the up, down, left, and right directions to This results in a greater adjustment range. Since the mid-infrared laser is invisible to human eyes, the red light generated by the 633nm He-Ne laser 4 is used...
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