Depolarization lidars are widely used to study clouds and aerosols because of their ability to discriminate between spherical particles and particles of irregular shape. Depolarization of cloud backscattered radiation can be caused also by multiple scattering events. One of the ways to gain information about particle parameters in the presence of strong multiple scattering is the measurement of radial and azimuthal dependence of the polarization patterns in the focal plane of receiver. We present an algorithm for the calculation of corresponding polarized patterns in the frame of double scattering approximation. Computations are performed for various receiver field of views, for different parameters of the scattering geometry, e.g., cloud b...
We developed a multiple-filed-of view multiple-scattering polarization lidar (MFMSPL) at 355nm to st...
The optical properties of clouds were measured with a polarization Mie lidar during April, 2004 and ...
Scanning lidar LOSA-M3 makes it possible to measure the polarization characteristics of backscatteri...
Depolarization lidars are widely used to study clouds and aerosols because of their ability to discr...
Depolarization lidars are widely used for the study of clouds and aerosols because of their ability ...
The work is devoted to remote sensing droplet clouds by coaxial lidar. The results of numerical mode...
The paper discusses results of a numerical modeling of distribution of the intensity of double scatt...
Under single scattering conditions, water droplets clouds do not depolarize the backscattered light....
This paper presents the results of theoretical and experimental, investigations of depolarization ch...
We have developed the Multiple Field of view Multiple Scattering Polarization Lidar (MFMSPL) system ...
Multi-field of view multiple-scattering polarization lidar (MFMSPL) has been developed to measure en...
The results of calculation of the ratio of polarization degrees of the double scattering lidar retur...
Quite recently, a semi-analytical approach to the sounding of multiply scattering media (clouds, sea...
We developed a multiple-filed-of view multiple-scattering polarization lidar (MFMSPL) at 355nm to st...
The optical properties of clouds were measured with a polarization Mie lidar during April, 2004 and ...
Scanning lidar LOSA-M3 makes it possible to measure the polarization characteristics of backscatteri...
Depolarization lidars are widely used to study clouds and aerosols because of their ability to discr...
Depolarization lidars are widely used for the study of clouds and aerosols because of their ability ...
The work is devoted to remote sensing droplet clouds by coaxial lidar. The results of numerical mode...
The paper discusses results of a numerical modeling of distribution of the intensity of double scatt...
Under single scattering conditions, water droplets clouds do not depolarize the backscattered light....
This paper presents the results of theoretical and experimental, investigations of depolarization ch...
We have developed the Multiple Field of view Multiple Scattering Polarization Lidar (MFMSPL) system ...
Multi-field of view multiple-scattering polarization lidar (MFMSPL) has been developed to measure en...
The results of calculation of the ratio of polarization degrees of the double scattering lidar retur...
Quite recently, a semi-analytical approach to the sounding of multiply scattering media (clouds, sea...
We developed a multiple-filed-of view multiple-scattering polarization lidar (MFMSPL) at 355nm to st...
The optical properties of clouds were measured with a polarization Mie lidar during April, 2004 and ...
Scanning lidar LOSA-M3 makes it possible to measure the polarization characteristics of backscatteri...