XXVIII International Symposium "Atmospheric and Ocean Optics. Atmospheric Physics"

July 04-08, 2022, Tomsk

Posters

  1. Shamanaev V.S., Lisenko A.A.
    Experimental determination of the SEA WATER extinction index in the subsurface waters layer from airborne lidar SIGNALS
  2. Loboda E.L., Agafontsev M.V., Staroseltseva A.A., Reyno V.V.
    Investigation of the influence of charge type on the shock tube characteristics
  3. Bazhenov O.E., Nevzorov A.V. , Smirnov S. V., Elnikov A.V., Loginov V. A.
    Comparison of the results of observations of the total ozone content over Tomsk (2006-2020) obtained by three spectrophotometers  
  4. Apeksimov D.V., Babushkin P.A., Geints Yu.E., Zemlyanov A.A., Matvienko G.G., Oshlakov V.K., Petrov A.V., Khoroshaeva E.E.
    Regularities of propagation of amplitude-modulated high-power femtosecond laser radiation in the air
  5. Apeksimov D.V., Babushkin P.A., Zemlyanov A.A., Kabanov A.M., Kochetov D.I., Oshlakov V.K., Petrov A.V., Khoroshaeva E.E.
    The influence of turbulence on propagation of femtosecond laser pulses along 100-m path
  6. Grigorii P Kohanenko, Anton V Klimkin, Konstantin Yu Osipov, Zhang Shuo
    Calculate the coordinates of the LiDAR sensing points
  7. Apeksimov D.V., Babushkin P.A., Zemlyanov A.A., Kabanov A.M., Kochetov D.I., Oshlakov V.K., Petrov A.V., Khoroshaeva E.E.
    REMOTE EXCITATION AND DETECTION OF TWO-PHOTON FLUORESCENCE USING FEMTOSECOND LASER PULSES
  8. Lyakhov A.N., Goncharov E.S., Loseva T.V.
    SCHUMANN RESONANCES AS MARKERS OF GLOBAL CHANGE IN THE ATMOSPHERE
  9. Suslin V.V.
    ZONE OF PHOTOSYNTHESIS IN THE DEEP REGION OF THE BLACK SEA ACCORDING TO THE 4D IOPs MODEL DATA
  10. Shishko V.A., Timofeev D.N., Konoshonkin A.V., Kustova N.V., Kozodoev A.V., Borovoi A.G.
    SOLUTION OF THE LIGHT SCATTERING PROBLEM by SMALL ATMOSPHERIC ICE CRYSTALS BY DDA method and COMPARISON WITH THE PHYSICAL OPTICS APPROXIMATION
  11. Timofeev D.N., Konoshonkin A.V., Kustova N.V., Shishko V.A., Borovoi A.G.
    Data bank of light scattering matrices for aerosol particles of arbitrary shape with different refractive indices and sizes from 10 to 1000 µm within the physical optics approximation
  12. Kuskov V.V., Banakh V.A.
    COMPENSATION OF THE OPTICAL AXIS MISSION OF THE TRANSMITTER AND RECEIVER BASED ON BACKSCATTERED RADIATION