Measurements of atmospheric aerosols and trace gases using the laser radar (lidar) techniques, have been in progress since 1985 at the Indian Institute of Tropical Meteorology, Pune (18°32′N, 73°51′E, 559 m AMSL), India. These observations carried out during nighttime in the lower atmosphere (up to 5.5 km AGL), employing an Argon ion / Helium-Neon lidar provided information on the nature, size, concentration and other characteristics of the constituents present in the tropical atmosphere. The time-height variations in aerosol concentration and associated layer structure exhibit marked differences between the post-sunset and pre-sunrise periods besides their seasonal variation with maximum concentration during pre-monsoon / winter and minimu...
In this study, we deal with observations of aerosol column content (height integration of vertical d...
The co-located optical (argon-ion lidar) and acoustic (Doppler sodar) radar systems at the Indian In...
A bistatic, CW (continuous wave) lidar (light detection and ranging) system has been developed at th...
This paper essentially addresses the structure and stratification of the nocturnal boundary layer (N...
The vertical profiles of the boundary-layer aerosols obtained with a bistatic Argon ion lidar system...
The pre-sunrise and post-sunset differences in the tropical urban aerosol distributions have been st...
Monitoring of urban atmospheric aerosols and trace gases using the lidar techniques has been in prog...
The nocturnal structure of the lower troposphere is studied using aerosol profile data (50–2800 m AG...
Lidar aerosol measurements made at Pune (lat. 18°32′N, long. 73°51′E, 559 m AMSL), India, a tropical...
15-21The aerosol mixing height is derived from the altitude distribution of aerosols in the lower at...
Atmospheric aerosol characteristics are being monitored, on a routine basis, with lidars and spectro...
The space-time variability of aerosol inhomogeneities provides unique information on atmospheric beh...
More than 200, weekly spaced, lidar-derived vertical profiles of aerosol concentration in the lower ...
The aerosol vertical profiles (20-1000 m) obtained in the atmospheric boundary layer, on four nights...
The scattering properties of aerosols over a tropical urban station, Pune, India, 118° 328 N, 73° ...
In this study, we deal with observations of aerosol column content (height integration of vertical d...
The co-located optical (argon-ion lidar) and acoustic (Doppler sodar) radar systems at the Indian In...
A bistatic, CW (continuous wave) lidar (light detection and ranging) system has been developed at th...
This paper essentially addresses the structure and stratification of the nocturnal boundary layer (N...
The vertical profiles of the boundary-layer aerosols obtained with a bistatic Argon ion lidar system...
The pre-sunrise and post-sunset differences in the tropical urban aerosol distributions have been st...
Monitoring of urban atmospheric aerosols and trace gases using the lidar techniques has been in prog...
The nocturnal structure of the lower troposphere is studied using aerosol profile data (50–2800 m AG...
Lidar aerosol measurements made at Pune (lat. 18°32′N, long. 73°51′E, 559 m AMSL), India, a tropical...
15-21The aerosol mixing height is derived from the altitude distribution of aerosols in the lower at...
Atmospheric aerosol characteristics are being monitored, on a routine basis, with lidars and spectro...
The space-time variability of aerosol inhomogeneities provides unique information on atmospheric beh...
More than 200, weekly spaced, lidar-derived vertical profiles of aerosol concentration in the lower ...
The aerosol vertical profiles (20-1000 m) obtained in the atmospheric boundary layer, on four nights...
The scattering properties of aerosols over a tropical urban station, Pune, India, 118° 328 N, 73° ...
In this study, we deal with observations of aerosol column content (height integration of vertical d...
The co-located optical (argon-ion lidar) and acoustic (Doppler sodar) radar systems at the Indian In...
A bistatic, CW (continuous wave) lidar (light detection and ranging) system has been developed at th...