Improving the reception and recording unit of the IAO SB RAS lidar complex
Vestnik KRAUNC. Fiziko-matematičeskie nauki, Tome 30 (2020) no. 1, pp. 127-131 Cet article a éte moissonné depuis la source Math-Net.Ru

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Lidar complex at small station of high-altitude atmospheric sensing in Institute of Atmospheric Optics, Siberian Branch, Russian Academy of Sciences makes it possible to obtain promptly and regularly the profiles of the scattering ratio up to the altitude of 70 km and atmospheric temperature and density in the altitude range of 10-70 km with the spatial resolution of 192 m. We developed a schematic optical diagram and design documentation for a six-channel receiving unit for receiving signals at the wavelengths of 532, 607, 355, and 384 nm, and wrote an algorithm for controlling and recording the signals in eight-channel photon counter.
Mots-clés : lidar
Keywords: modernization, automated system.
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V. N. Marichev; D. A. Bochkovsky. Improving the reception and recording unit of the IAO SB RAS lidar complex. Vestnik KRAUNC. Fiziko-matematičeskie nauki, Tome 30 (2020) no. 1, pp. 127-131. http://geodesic.mathdoc.fr/item/VKAM_2020_30_1_a10/

[1] Marichev V. N., “Issledovaniye izmenchivosti vertikal'noy struktury fonovogo aerozolya v stratosfere nad Tomskom na osnove lidarnykh nablyudeniy v 2010-2011 gg.”, Optika atmosfery i okeana, 25:11 (2012), 976-984

[2] Marichev V. N., Bochkosvkii D. A., “Investigation of variability of the vertical stratification of background aerosol over Tomsk in 2015”, Proceedings of SPIE, 10035 (2016), 100356C-1 - 100356C-5 | DOI

[3] Marichev V. N., Bochkosvkii D. A., “Lidar studies of specific manifestation features of stratospheric warming in winter of 2014-2015”, Proceedings of SPIE, 9680 (2015)

[4] Marichev V. N., “Analiz povedeniya plotnosti vozdukha i temperatury v stratosfere nad Tomskom v periody yeye vozmushchennogo i spokoynogo sostoyaniy, vypolnennyy po rezul'tatam lidarnykh izmereniy”, Optika atmosfery i okeana, 26:9 (2013), 783-792

[5] Marichev V. N., Bochkosvkii D. A., “A regular stage of modernization of the lidar complex of a small lidar station at IAO SB RAS”, Proceedings of SPIE, 108339 (2018), 108339T-1 - 108339T-4