A simple algorithm is derived to retrieve the aerosol backscattering and extinction vertical profiles from simultaneously detected ground and space elastic lidar signals, without any a priori hypothesis on aerosol particles properties. This technique can be applied at any wavelength whenever two “counter looking” lidars are available and the atmosphere can be considered horizontally homogeneous in a spatial scale of the order of the distance between the two lidar beams. To test the accuracy of the algorithm a numerical simulation has been performed. Moreover, it has been applied in a real case to level 1 products from CALIPSO
International audienceSpaceborne active lidar systems are under development to give new insight into...
Within the framework of the present work, an aerosol typing methodology applicable to both ground-ba...
In order to investigate the aerosol variability over the southwest region of Slovenia, an ultraviole...
A simple algorithm is derived to retrieve the aerosol backscattering and extinction vertical profile...
Aerosols play an important role in many atmospheric processes but their highly heterogeneous nature ...
A technique to determine the aerosol extinction-to-backscatter ratio (lidar ratio) as well as extinc...
A new method, called ElEx (elastic extinction), is proposed for the estimation of extinction coeffic...
A modified two-wavelength lidar inversion algorithm is proposed to aid in the retrieval of aerosol e...
The peculiarity of lidar systems is to provide profiles of optical properties of the atmosphere. The...
A novel method for calibration and quantitative aerosol optical properties retrieval from Doppler wi...
The new developed elastic lidar system utilizes two identical elastic lidars, in counter-look config...
In this study, we present the concept of a synergistic algorithm to retrieve the vertical concentrat...
Lidars are active optical remote sensing instruments with unique capabilities for atmospheric soundi...
Lidars are active optical remote sensing instruments with unique capabilities for atmospheric soundi...
Lidar plays an essential role in monitoring the vertical variation of atmospheric aerosols. However,...
International audienceSpaceborne active lidar systems are under development to give new insight into...
Within the framework of the present work, an aerosol typing methodology applicable to both ground-ba...
In order to investigate the aerosol variability over the southwest region of Slovenia, an ultraviole...
A simple algorithm is derived to retrieve the aerosol backscattering and extinction vertical profile...
Aerosols play an important role in many atmospheric processes but their highly heterogeneous nature ...
A technique to determine the aerosol extinction-to-backscatter ratio (lidar ratio) as well as extinc...
A new method, called ElEx (elastic extinction), is proposed for the estimation of extinction coeffic...
A modified two-wavelength lidar inversion algorithm is proposed to aid in the retrieval of aerosol e...
The peculiarity of lidar systems is to provide profiles of optical properties of the atmosphere. The...
A novel method for calibration and quantitative aerosol optical properties retrieval from Doppler wi...
The new developed elastic lidar system utilizes two identical elastic lidars, in counter-look config...
In this study, we present the concept of a synergistic algorithm to retrieve the vertical concentrat...
Lidars are active optical remote sensing instruments with unique capabilities for atmospheric soundi...
Lidars are active optical remote sensing instruments with unique capabilities for atmospheric soundi...
Lidar plays an essential role in monitoring the vertical variation of atmospheric aerosols. However,...
International audienceSpaceborne active lidar systems are under development to give new insight into...
Within the framework of the present work, an aerosol typing methodology applicable to both ground-ba...
In order to investigate the aerosol variability over the southwest region of Slovenia, an ultraviole...