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Российский физический журнал,
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T. 18, p. 1016–1017
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Polarization Structure of Multiply Scattered Background Components of Lidar Signals Reflected from Cloud Ice Crystals
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Российский физический журнал,
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T. 44, p. 1197–1208
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Specific Features of Lidar Returns in Airborne Sensing of Seawater Containing Air Bubbles
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Российский физический журнал,
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T. 46, p. 1086–1091
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Hydrooptical laser sensing under controllable conditions
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Российский физический журнал,
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T. 48, p. 1251–1256
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Estimation of lidar return signal levels in two-beam hydrooptical laser sensing
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Российский физический журнал,
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T. 50, p. 1178–1182
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Laser Sensing of the Atmosphere and Upper Layer of the Ocean by an Airborn and Shipborne Lidars
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Российский физический журнал,
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T. 56, p. 813–821
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Vertical distribution of aerosol mass concentration in the atmospheric boundary layer above the Atlantic Ocean from lidar sensing data
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Российский физический журнал,
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T. 56, p. 269–272
https://doi.org/10.1007/s11182-013-0026-4
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Altitude of the Lower Cloud Boundary from Results of Laser Sensing
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T. 57, p. 762–767
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Statistical Estimates of Lidar Signals Reflected from the Ocean Bottom, Using a Lidar Equipped with a Photodetector Array
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Российский физический журнал,
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T. 60, p. 1056–1063
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Statistical Estimates of Lidar Signals Reflected from the Ocean Bottom
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Российский физический журнал,
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T. 59, p. 2034–2040
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Statistical Analysis of the Potential of a Bathymetric Lidar with Time-of-Flight Matrix Spad Photodetector
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Российский физический журнал,
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T. 62, p. 1724–1730
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Statistical Estimates of the Effect of the Sea Water Scattering Phase Function on the Characteristics of Airborne Hydrooptical Lidar Signals
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Российский физический журнал,
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T. 64, p. 1373–1380
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