Mesostratospheric Lidar for the Heliogeophysical Complex

Author:

Matvienko Gennady1,Marichev Valery1,Bobrovnikov Sergey1,Yakovlev Semen1,Chistilin Aleksandr2,Sautkin Vladimir2

Affiliation:

1. V.E. Zuev Institute of Atmospheric Optics SB RAS

2. S.A. Zverev Krasnogorsk Plant

Abstract

The Heliogeophysical Complex of RAS, which is developing at the Institute of Solar-Terrestrial Physics SB RAS in the Irkutsk region, includes instruments for studying the Sun, the upper atmosphere and the mesostratospheric lidar system (MS lidar) for analyzing the neutral part of the atmosphere from Earth’s surface to the thermosphere (100–110 km altitude). More specifically, the objective of the MS lidar is to measure profiles of thermodynamic parameters of the atmosphere and the altitude distribution of the aerosol-gas composition. To solve these problems, the MS lidar ensures the use of several laser sensing methods at a number of specially selected laser wavelengths in the total range 0.35–1.1 μm. In this case, the following types of scattering are used: molecular, aerosol, Raman, resonance, as well as differential absorption, Doppler broadening and shift of the spectrum of scattered radiation. The article describes the methods used in the MS lidar and the measured atmospheric characteristics.

Publisher

Infra-M Academic Publishing House

Subject

Space and Planetary Science,Atmospheric Science,Geophysics

Reference32 articles.

1. Bondarenko S.L., Burlakov V.D., Grishaev M.V., Zuev V.V., Marichev V.N., Pravdin V.L. Laser sensing of the mesosphere at the Siberian lidar station. Optika atmosfery i okeana [Atmospheric and Oceanic Optics]. 1994, vol. 7, no. 11-12, pp. 1652–1655. (In Russian)., Bondarenko S.L., Burlakov V.D., Grishaev M.V., Zuev V.V., Marichev V.N., Pravdin V.L. Laser sensing of the mesosphere at the Siberian lidar station. Optika atmosfery i okeana [Atmospheric and Oceanic Optics]. 1994, vol. 7, no. 11-12, pp. 1652–1655. (In Russian).

2. Browell E.V., Wilkerson T.D., Mcilrath T.J. Water vapor differential absorption lidar development and evolution. Applied Optics. 1979, vol. 18, no. 20, pp. 3474–3483. DOI: 10.1364/ AO.18.003474., Browell E.V., Wilkerson T.D., Mcilrath T.J. Water vapor differential absorption lidar development and evolution. Applied Optics. 1979, vol. 18, no. 20, pp. 3474–3483. DOI: 10.1364/ AO.18.003474.

3. Burlakov V.D., Elnikov A.V., Zuev V.V., Marichev V.N., Pravdin V.L., Smirnov S.V., Stolyarova N.A. Lidar observations of the stratospheric ozone and aerosol in Tomsk (56° N, 85° E) following the eruption of the Pinatubo volcano. Optika atmosfery i okeana [Atmospheric and Oceanic Optics]. 1993, vol. 6, no. 10, pp. 1224–1233. (In Russian)., Burlakov V.D., Elnikov A.V., Zuev V.V., Marichev V.N., Pravdin V.L., Smirnov S.V., Stolyarova N.A. Lidar observations of the stratospheric ozone and aerosol in Tomsk (56° N, 85° E) following the eruption of the Pinatubo volcano. Optika atmosfery i okeana [Atmospheric and Oceanic Optics]. 1993, vol. 6, no. 10, pp. 1224–1233. (In Russian).

4. Czin Czyao, Gotao Yan, Czihun Van, Syueu Chen, Facyun Li. Sporadic potassium layers and their relationship with sporadic E-layers in the mesopause region above Beijing (China). Solnechno-zemnaya fizika [Solar-Terr. Phys]. 2017, vol. 3, no. 2, pp. 64–69. DOI: 10.12737/22597., Czin Czyao, Gotao Yan, Czihun Van, Syueu Chen, Facyun Li. Sporadic potassium layers and their relationship with sporadic E-layers in the mesopause region above Beijing (China). Solnechno-zemnaya fizika [Solar-Terr. Phys]. 2017, vol. 3, no. 2, pp. 64–69. DOI: 10.12737/22597.

5. Cheremisin A.A., Marichev V.N., Novikov P.V. Polar stratospheric cloud transfer from Arctic regions to Tomsk in January, 2010. Optika atmosfery i okeana [Atmospheric and Oceanic Optics]. 2013, vol. 26, no. 2, pp. 93–99. (In Russian)., Cheremisin A.A., Marichev V.N., Novikov P.V. Polar stratospheric cloud transfer from Arctic regions to Tomsk in January, 2010. Optika atmosfery i okeana [Atmospheric and Oceanic Optics]. 2013, vol. 26, no. 2, pp. 93–99. (In Russian).

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