International audienceThe role of polar stratospheric clouds in polar ozone loss has been well documented. The CALIPSO satellite mission offers a new opportunity to characterize PSCs on spatial and temporal scales previously impossible. A PSC detection algorithm based on a single wavelength threshold approach has been developed for CALIPSO. The method appears to accurately detect PSCs of all opacities, including tenuous clouds, with a very low rate of false positives and few missed clouds. We applied the algorithm to CALIOP data acquired during the 2006 Antarctic winter season from 13 June through 31 October. The spatial and temporal distribution of CALIPSO PSC observations is illustrated with weekly maps of PSC occurrence. The evolution of...
International audiencePolar Stratospheric Clouds (PSC) play a critical role in the stratospheric ozo...
Spaceborne lidar measurements from CALIPSO (Cloud-Aerosol Lidar and Infrared Pathfinder Satellite O...
Polar Stratospheric Clouds (PSCs) play a key role for ozone depletion in the polar stratosphere. Its...
International audienceThe role of polar stratospheric clouds in polar ozone loss has been well docum...
Polar stratospheric clouds (PSCs) play a crucial role in the springtime chemical depletion of ozone ...
International audienceThis paper presents statistics of polar stratospheric clouds (PSCs) above Anta...
International audienceGround-based and satellite observations have hinted at the existence of polar ...
Polar stratospheric clouds (PSCs) play key roles in the springtime chemical depletion of ozone at hi...
A comparison of polar stratospheric cloud (PSC) occurrence from 2006 to 2010 is presented, as observ...
SRI International operated a dual wavelength (1.064 micrometer and .532 micrometer) aerosol lidar at...
Polar stratospheric clouds (PSCs) contribute to catalytic ozone destruction by providing surfaces fo...
Polar stratospheric clouds play a significant role in the seasonal thinning of the ozone layer by fa...
International audiencePolar Stratospheric Clouds (PSC) play a critical role in the stratospheric ozo...
Spaceborne lidar measurements from CALIPSO (Cloud-Aerosol Lidar and Infrared Pathfinder Satellite O...
Polar Stratospheric Clouds (PSCs) play a key role for ozone depletion in the polar stratosphere. Its...
International audienceThe role of polar stratospheric clouds in polar ozone loss has been well docum...
Polar stratospheric clouds (PSCs) play a crucial role in the springtime chemical depletion of ozone ...
International audienceThis paper presents statistics of polar stratospheric clouds (PSCs) above Anta...
International audienceGround-based and satellite observations have hinted at the existence of polar ...
Polar stratospheric clouds (PSCs) play key roles in the springtime chemical depletion of ozone at hi...
A comparison of polar stratospheric cloud (PSC) occurrence from 2006 to 2010 is presented, as observ...
SRI International operated a dual wavelength (1.064 micrometer and .532 micrometer) aerosol lidar at...
Polar stratospheric clouds (PSCs) contribute to catalytic ozone destruction by providing surfaces fo...
Polar stratospheric clouds play a significant role in the seasonal thinning of the ozone layer by fa...
International audiencePolar Stratospheric Clouds (PSC) play a critical role in the stratospheric ozo...
Spaceborne lidar measurements from CALIPSO (Cloud-Aerosol Lidar and Infrared Pathfinder Satellite O...
Polar Stratospheric Clouds (PSCs) play a key role for ozone depletion in the polar stratosphere. Its...