A new Raman lidar for unattended, round-the-clock measurement of vertical water vapor profiles for operational use by the MeteoSwiss has been developed during the past years by the Swiss Federal Institute of Technology, Lausanne. The lidar uses narrow field-of-view, narrowband configuration, a UV laser, and four 30 cm in diameter mirrors, fiber-coupled to a grating polychromator. The optical design allows water vapor retrieval from the incomplete overlap region without instrument-specific range-dependent corrections. The daytime vertical range covers the mid-troposphere, whereas the nighttime range extends to the tropopause. The near range coverage is extended down to 100 m AGL by the use of an additional fiber in one of the telescopes. Thi...
The performance of a space-borne water vapour and temperature Raman lidar has been simulated, with a...
International audienceA ground based Rayleigh lidar has provided continuous observations of troposph...
International audienceThe temperature is a fundamental parameter for meteorology and climatology. A ...
Water vapor is a fundamental constituent of the atmosphere and is the most abundant green house gas ...
The Raman Lidar for Meteorological Observations (RALMO) was installed at the MeteoSwiss Regional Cen...
Water vapor and temperature spatial distribution and their temporal evolution are among the most imp...
The Maïdo high-altitude observatory located in Reunion Island (21°S, 55°E) is equipped with an innov...
One of the most important atmospheric constituents needed for climate and meteorological studies is ...
International audienceThe Maïdo high-altitude observatory located in Reunion Island (21°S, 55°E) is ...
Obtaining vertical profiles of tropospheric water vapor provides critically important information to...
International audienceA Raman water vapor lidar has been developed at the Haute-Provence Observatory...
Les cycles couplés des aérosols, de la vapeur d’eau et des nuages sont à l’heure actuelle un domaine...
High temporal and spatial resolution measurements by both space-borne and ground-based instruments a...
International audienceGround based lidars can provide continuous observations of tropospheric water ...
ENEA is planning to develop a lidar system for measurement of the vertical profi le of water vapour ...
The performance of a space-borne water vapour and temperature Raman lidar has been simulated, with a...
International audienceA ground based Rayleigh lidar has provided continuous observations of troposph...
International audienceThe temperature is a fundamental parameter for meteorology and climatology. A ...
Water vapor is a fundamental constituent of the atmosphere and is the most abundant green house gas ...
The Raman Lidar for Meteorological Observations (RALMO) was installed at the MeteoSwiss Regional Cen...
Water vapor and temperature spatial distribution and their temporal evolution are among the most imp...
The Maïdo high-altitude observatory located in Reunion Island (21°S, 55°E) is equipped with an innov...
One of the most important atmospheric constituents needed for climate and meteorological studies is ...
International audienceThe Maïdo high-altitude observatory located in Reunion Island (21°S, 55°E) is ...
Obtaining vertical profiles of tropospheric water vapor provides critically important information to...
International audienceA Raman water vapor lidar has been developed at the Haute-Provence Observatory...
Les cycles couplés des aérosols, de la vapeur d’eau et des nuages sont à l’heure actuelle un domaine...
High temporal and spatial resolution measurements by both space-borne and ground-based instruments a...
International audienceGround based lidars can provide continuous observations of tropospheric water ...
ENEA is planning to develop a lidar system for measurement of the vertical profi le of water vapour ...
The performance of a space-borne water vapour and temperature Raman lidar has been simulated, with a...
International audienceA ground based Rayleigh lidar has provided continuous observations of troposph...
International audienceThe temperature is a fundamental parameter for meteorology and climatology. A ...