Anguang's new progress in laser heterodyne spectroscopy

[ China Instrument Network Instrument R&D ] Recently, the research team of Anguang Institute Gao Xiaoming made new progress in the research of atmospheric greenhouse gas gas column total and vertical profile high-precision infrared laser heterodyne spectroscopy technology. The relevant research results are based on 3.53. The Mid-infrared laser heterodyne radiometer (LHR) based on a 3.53 μm room-temperature interband cascade laser was published in the international academic journal Optics Express.

Laser heterodyne signal spectrum analysis and system instrument function

Laser heterodyne spectrum inversion results
Infrared laser heterodyne spectroscopy has the advantages of high spectral resolution and vertical spatial resolution, fast sampling speed, small size, low power consumption, and detection sensitivity of shot noise limit. It is important in the fields of atmospheric satellite remote sensing and astronomical observation. Application prospects. The research group and the associate researcher and the researcher of Wang Guishi used the 3.53μm inter-band cascade laser as the local oscillator source to establish a passive laser heterodyne detection system for atmospheric methane and water vapor foundation with a spectral resolution of 0.003cm-1. The spectral resolution of the spectral data, and based on the optimal estimation algorithm (OEM) and the reference forward model (RFM) to establish an atmospheric greenhouse gas profile inversion model, using the measured data to obtain the vertical profile of atmospheric methane and water vapor, and The total amount of methane gas column and dry air mixing ratio.
This research has important application value for the development of atmospheric passive remote sensing instruments in the mid-infrared band. The research work was supported by the National Natural Science Foundation of China, the National Key Research and Development Program, and the National Science and Technology Research Institute.
(Original title: Aoguang's research on laser heterodyne spectroscopy technology has made new progress)

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