The recent intensification of the circumpolar circulation in the SH troposphere in summer and autumn has been attributed to external forcing such as stratospheric ozone depletion and greenhouse gas (GHG) increases. Several studies have shown that climate models are able to simulate observed changes when forced by observed ozone trends or combined ozone and GHG trends. However, as some of these studies suffered from erroneously specified forcing, the reason for the circulation intensification remains debatable. Here, we re-approach this issue using data from 21 CMIP3 models. We demonstrate that only models that include ozone depletion simulate downward propagation of the circulation changes from the stratosphere to the troposphere similar to...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...
Changes in stratospheric ozone have previously been linked to Southern Hemisphere (SH) circulation c...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...
The recent intensification of the circumpolar circulation in the SH troposphere in summer and autumn...
Climate change in the Southern Hemisphere (SH) has been robustly documented in the last several year...
Stratospheric climate has changed significantly during the last decades. The causes of these changes...
The impact of stratospheric ozone on the tropospheric general circulation of the Southern Hemisphere...
The impact of stratospheric ozone on the tropospheric general circulation of the Southern Hemisphere...
This work documents long-term changes in the Southern Hemisphere circulation in the austral springâ\...
Over the last three decades, ozone depletion over Antarctica has affected temperature and winds in t...
Stratospheric ozone depletion has significantly influenced the tropospheric circulation and climate ...
The Antarctic ozone hole has led to substantial changes in the Southern Hemisphere atmospheric circu...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...
The Southern Hemisphere (SH) zonal-mean circulation change in response to Antarctic ozone depletion ...
The final warming date of the polar vortex is a key component of Southern Hemisphere stratospheric a...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...
Changes in stratospheric ozone have previously been linked to Southern Hemisphere (SH) circulation c...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...
The recent intensification of the circumpolar circulation in the SH troposphere in summer and autumn...
Climate change in the Southern Hemisphere (SH) has been robustly documented in the last several year...
Stratospheric climate has changed significantly during the last decades. The causes of these changes...
The impact of stratospheric ozone on the tropospheric general circulation of the Southern Hemisphere...
The impact of stratospheric ozone on the tropospheric general circulation of the Southern Hemisphere...
This work documents long-term changes in the Southern Hemisphere circulation in the austral springâ\...
Over the last three decades, ozone depletion over Antarctica has affected temperature and winds in t...
Stratospheric ozone depletion has significantly influenced the tropospheric circulation and climate ...
The Antarctic ozone hole has led to substantial changes in the Southern Hemisphere atmospheric circu...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...
The Southern Hemisphere (SH) zonal-mean circulation change in response to Antarctic ozone depletion ...
The final warming date of the polar vortex is a key component of Southern Hemisphere stratospheric a...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...
Changes in stratospheric ozone have previously been linked to Southern Hemisphere (SH) circulation c...
The response of stratospheric climate and circulation to increasing amounts of greenhouse gases (GHG...