237 results on '"Borovoi, Anatoli G."'
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102. Negative polarization phenomenon for large randomly oriented particles of irregular shapes.
103. Negative polarization for the light scattering by irregular shaped particles
104. Verification of the physical optics approximation for the calculation of the light scattering matrixes on polyhedral Platonic bodies
105. Calculation of light backscattering matrix by the DDA method for arbitrary particles of cirrus clouds for lidar remote sensing.
106. Problem of light scattering by atmospheric ice crystals
107. Light Scattering by Preferentially Oriented Ice Crystals
108. Light backscattering by hexagonal ice crystal particles in the geometrical optics approximation
109. Scattering matrices for ice crystal particles with preferred orientations
110. Development of an optical model for cirrus clouds
111. Monte Carlo simulation of radiation transfer in optically anisotropic clouds
112. Extinction-to-backscatter ratio calculated for ice crystal particles
113. Polarized light backscatter by hexagonal ice crystal particles
114. Scattering matrices for large ice crystal particles
115. Scattering (Mueller) matrices for ice crystal particles of cirrus clouds
116. Mueller matrices for randomly oriented ice crystal particles in the geometric optics approximation
117. Mueller matrix for randomly oriented ice crystal particles
118. Light scattering by ice crystals of cirrus clouds
119. Application of polarization lidars to study the orientation of crystalline particles in ice clouds.
120. Multiple scattering of short waves by uncorrelated and correlated scatterers.
121. Development of an optical model for cirrus clouds.
122. Extinction-to-backscatter ratio calculated for ice crystal particles.
123. Scattering matrices for ice crystal particles with preferred orientations.
124. Polarized light backscatter by hexagonal ice crystal particles.
125. Scattering (Mueller) matrices for ice crystal particles of cirrus clouds.
126. Light scattering by ice crystals of cirrus clouds.
127. Mueller matrix for randomly oriented ice crystal particles.
128. Mueller matrices for randomly oriented ice crystal particles in the geometric optics approximation.
129. How precisely must an equation describe the return signal of a spaceborne lidar system to allow for the retrieval of cloud parameters?
130. Light scattering by ice crystals of cirrus clouds: Jones matrix.
131. Backscattering cross-section of hexagonal ice crystals: I.
132. Backscattering Mueller matrix of hexagonal ice crystals: II.
133. Backscattering Mueller matrix of hexagonal ice crystals: II
134. Backscattering by hexagonal ice crystals
135. Scattering of light by red blood cells
136. Green's function of the radiative transfer equation in snowfalls
137. Damping of intensity fluctuations for laser beams propagating in snowfalls
138. 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
139. Interference phenomena at backscattering by ice crystals of irregular shape
140. Coherent and incoherent additions of light beams at solutions of the light scattering problem by use the beam tracing method within the framework of physical optics
141. Polarization lidars with conical scanning for retrieving the microphysical characteristics of cirrus clouds
142. Comparison of the physical optics code with the GOIE method and the direct solution of Maxwell equations obtained by FDTD
143. Retrieval of particle-size distribution and number-density profile in clouds and fogs from multiple scattered radiation
144. Measurements of blood parameters in multiple scattering
145. Light scattering matrix for atmospheric ice aggregates of cirrus clouds within geometrical optics approximation.
146. 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.
147. Light scattering on atmospheric ice crystals of irregular shape.
148. Calculation of the lidar signal by the DDA method applied to the data of satellite remote sensing of cirrus clouds for climate change detection.
149. Strong scintillations of laser radiation in the turbulent atmosphere with rain or snow
150. Green's function of the radiative transfer equation in snowfalls.
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