We report results from two pairs of chemistry-climate model simulations using the same climate model but different chemical perturbations. In each pair of experiments an ozone change was triggered by a simple change in the chemistry. One pair of model experiments looked at the impact of polar stratospheric clouds (PSCs) and the other pair at the impact of short-lived halogenated species on composition and circulation. The model response is complex with both positive and negative changes in ozone concentration, depending on location. These changes result from coupling between composition, temperature and circulation. Even though the causes of the modelled ozone changes are different, the high latitude Southern Hemisphere response in the lowe...
The sensitivity of the middle atmosphere circulation to ozone depletion and increase in greenhouse g...
Severe ozone depletion in the polar lower stratosphere has been linked to significant changes in tro...
Stratospheric climate has changed during the last decades significantly. The causes of these changes...
The impact of stratospheric ozone on the tropospheric general circulation of the Southern Hemisphere...
Stratospheric ozone depletion has significantly influenced the tropospheric circulation and climate ...
Recent observations show a significant decrease in lower-stratospheric (LS) ozone concentrations in ...
The Southern Hemisphere (SH) zonal-mean circulation change in response to Antarctic ozone depletion ...
Climate change in the Southern Hemisphere (SH) has been robustly documented in the last several year...
Changes in stratospheric ozone concentrations and increasing concentrations of greenhouse gases (GHG...
The Southern Hemisphere (SH) zonal-mean circulation change in response to Antarctic ozone depletion ...
The impact of stratospheric ozone on the tropospheric general circulation of the Southern Hemisphere...
Thirteen coupled Atmospheric Oceanic Global Circulation Models (AOGCMs) and seven Chemistry Climate ...
Stratospheric ozone recovery in the Southern Hemisphere is expected to drive pronounced trends in at...
The sensitivity of the middle atmosphere circulation to ozone depletion and increase in greenhouse g...
Severe ozone depletion in the polar lower stratosphere has been linked to significant changes in tro...
Stratospheric climate has changed during the last decades significantly. The causes of these changes...
The impact of stratospheric ozone on the tropospheric general circulation of the Southern Hemisphere...
Stratospheric ozone depletion has significantly influenced the tropospheric circulation and climate ...
Recent observations show a significant decrease in lower-stratospheric (LS) ozone concentrations in ...
The Southern Hemisphere (SH) zonal-mean circulation change in response to Antarctic ozone depletion ...
Climate change in the Southern Hemisphere (SH) has been robustly documented in the last several year...
Changes in stratospheric ozone concentrations and increasing concentrations of greenhouse gases (GHG...
The Southern Hemisphere (SH) zonal-mean circulation change in response to Antarctic ozone depletion ...
The impact of stratospheric ozone on the tropospheric general circulation of the Southern Hemisphere...
Thirteen coupled Atmospheric Oceanic Global Circulation Models (AOGCMs) and seven Chemistry Climate ...
Stratospheric ozone recovery in the Southern Hemisphere is expected to drive pronounced trends in at...
The sensitivity of the middle atmosphere circulation to ozone depletion and increase in greenhouse g...
Severe ozone depletion in the polar lower stratosphere has been linked to significant changes in tro...
Stratospheric climate has changed during the last decades significantly. The causes of these changes...