152 results on '"Borovoi, Anatoli G."'
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2. Аpplication of the discrete dipole method and the approximation of physical optics to the problem of light scattering by atmospheric ice crystals of cirrous clouds for remote sensing problems
3. Data bank of the optical properties of ice particles of cirrus clouds for interpretation of lidar data of Russian Orbital Station
4. Solution of the problem of electromagnetic scattering by ice particles of cirrus clouds for 0.355 μm lidar and 94 GHz radar of satellite EarthCARE
5. Solution of the light scattering problem by small atmospheric ice crystals by discrete dipole approximation and comparison with the physical optics approximation
6. Negative polarization phenomenon for large randomly oriented particles of irregular shapes
7. Light scattering matrix for large irregularly shaped ice crystals averaged over an ensemble of particles.
8. Calculation of light backscattering matrix by the DDA method for arbitrary particles of cirrus clouds for lidar remote sensing
9. Light scattering by atmospheric ice crystals of regular and arbitrary shape within the framework of the physical optics method for the problems of interpreting data from ground-based and space-based lidars
10. Light scattering on atmospheric ice crystals of irregular shape
11. Light scattering matrix for atmospheric ice aggregates of cirrus clouds within geometrical optics approximation
12. Application of polarization lidars to study the orientation of crystalline particles in ice clouds
13. Calculation of the lidar signal by the DDA method applied to the data of satellite remote sensing of cirrus clouds for climate change detection
14. Data bank of light backscattering matrices for atmospheric ice crystals of non-convex shape for wavelengths 0.355, 0.532, 1.064 μm
15. Scattering properties of singular and aggregate atmospheric hexagonal ice particles
16. Light scattering by large particles with the arbitrary shape within the geometrical optics approximation.
17. Calculation of light scattering matrix on particles of dust aerosol.
18. Absorption accounting in the light scattering problem for arbitrarily shaped atmospheric ice particles within physical optics approximation method.
19. Microwave scattering matrices for ice crystals of cirrus clouds calculated with the discrete dipole approximation (DDA).
20. Combined use of lidar and radar for studying microphysical properties of cirrus clouds.
21. Calculation of light scattering matrix for quasi-horizontally oriented atmospheric ice crystals within the geometrical optics approximation.
22. Аpplication of the discrete dipole method and the approximation of physical optics to the problem of light scattering by atmospheric ice crystals of cirrous clouds for remote sensing problems.
23. Data bank of the optical properties of ice particles of cirrus clouds for interpretation of lidar data of Russian Orbital Station.
24. Negative polarization for the light scattering by irregular shaped particles.
25. Verification of the physical optics approximation for the calculation of the light scattering matrixes on polyhedral Platonic bodies.
26. Light scattering matrix for quasi-horizontally oriented atmospheric ice crystals for radiation transfer problems
27. Retrieving microphysics of cirrus clouds from lidar-radar and depolarization ratios
28. Light scattering on large ice spherical particles for lidar sounding of atmosphere
29. Numerical solution of the light scattering problem for atmospheric ice particles in the infrared range for retrieving the microphysical properties of cirrus clouds
30. Calculating the radar signal reflected from cirrus cloud by discrete dipole approximation
31. Calculation of backscattering matrix for ice particles of cirrus clouds for 1.55 and 2 micron lidars within the physical optics approximation
32. Scattering matrixes of hexagonal ice crystals of cirrus clouds calculated for problems of radiation balance.
33. Appearance of the corner reflection effect in cirrus clouds for off-zenith lidar profiling.
34. Numerical study of extinction matrix in cirrus clouds.
35. Backscattering matrices calculation for atmospheric ice crystals within the physical optics approximation with absorption effect.
36. Backscattering by hexagonal ice crystals with a large distortion angles.
37. Calculation of cirrus clouds backscattering for lidar studies within the physical optics approximation.
38. Development of the algorithm for light scattering by concave ice crystals of cirrus clouds.
39. Main types of optical beams giving predominant contributions to the light backscatter for the irregular hexagonal columns.
40. POWER LAWS FOR THE BACKSCATTERING MATRICES IN THE CASE OF LIDAR SENSING OF CIRRUS CLOUDS.
41. Problem of light scattering by atmospheric ice crystals.
42. Absorption accounting in the light scattering problem for arbitrarily shaped atmospheric ice particles within physical optics approximation method
43. Microwave scattering matrices for ice crystals of cirrus clouds calculated with the discrete dipole approximation (DDA)
44. Combined use of lidar and radar for studying microphysical properties of cirrus clouds
45. Calculation of light scattering matrix for quasi-horizontally oriented atmospheric ice crystals within the geometrical optics approximation
46. Numerical study of extinction matrix in cirrus clouds
47. Backscattering matrices calculation for atmospheric ice crystals within the physical optics approximation with absorption effect
48. Backscattering by hexagonal ice crystals with large distortion angles
49. Calculation of cirrus clouds backscattering for lidar studies within the physical optics approximation
50. Simulation of a scanning lidar signal for the case of a mixture of quasi-horizontally oriented hexagonal particles and randomly oriented particles of arbitrary shape.
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