International audienceThis paper presents statistics of polar stratospheric clouds (PSCs) above Antarctica from June to October 2006 using observations from the Cloud-Aerosol Lidar with Orthogonal Polarization (CALIOP) spaceborne lidar, part of the CALIPSO mission. Synoptic-scale changes in geographic and temporal distribution are documented weekly and correlated with temperature fields. A high spatial and temporal variability tends to contradict the hypothesis that PSCs are mostly created via slow processes mainly governed by large-scale temperature changes. Linear depolarization ratios reveal strongly typed PSCs with distinct characteristics (implying different microphysics), but unique cloud compositions cannot be singled out. A west/eas...
International audiencePolar Stratospheric Clouds (PSC) play a critical role in the stratospheric ozo...
A comparison of polar stratospheric cloud (PSC) occurrence from 2006 to 2010 is presented, as observ...
The 2015-2016 stratospheric winter was the coldest in the 36-year climatological data record. The ex...
International audienceThis paper presents statistics of polar stratospheric clouds (PSCs) above Anta...
The role of polar stratospheric clouds in polar ozone loss has been well documented. The CALIPSO sat...
International audienceGround-based and satellite observations have hinted at the existence of polar ...
International audienceThe role of polar stratospheric clouds in polar ozone loss has been well docum...
Polar stratospheric clouds (PSCs) play key roles in the springtime chemical depletion of ozone at hi...
Polar stratospheric clouds (PSCs) play a crucial role in the springtime chemical depletion of ozone ...
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...
Polar stratospheric clouds (PSC's) have been detected repeatedly during Arctic and Antarctic winters...
International audiencePolar Stratospheric Clouds (PSC) play a critical role in the stratospheric ozo...
A comparison of polar stratospheric cloud (PSC) occurrence from 2006 to 2010 is presented, as observ...
The 2015-2016 stratospheric winter was the coldest in the 36-year climatological data record. The ex...
International audienceThis paper presents statistics of polar stratospheric clouds (PSCs) above Anta...
The role of polar stratospheric clouds in polar ozone loss has been well documented. The CALIPSO sat...
International audienceGround-based and satellite observations have hinted at the existence of polar ...
International audienceThe role of polar stratospheric clouds in polar ozone loss has been well docum...
Polar stratospheric clouds (PSCs) play key roles in the springtime chemical depletion of ozone at hi...
Polar stratospheric clouds (PSCs) play a crucial role in the springtime chemical depletion of ozone ...
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...
Polar stratospheric clouds (PSC's) have been detected repeatedly during Arctic and Antarctic winters...
International audiencePolar Stratospheric Clouds (PSC) play a critical role in the stratospheric ozo...
A comparison of polar stratospheric cloud (PSC) occurrence from 2006 to 2010 is presented, as observ...
The 2015-2016 stratospheric winter was the coldest in the 36-year climatological data record. The ex...