It is well established that variable wintertime planetary wave forcing in the stratosphere controls the variability of Arctic stratospheric ozone through changes in the strength of the polar vortex and the residual circulation. While previous studies focused on the variations in upward wave flux entering the lower stratosphere, here the impact of downward planetary wave reflection on ozone is investigated for the first time. Utilizing the MERRA2 reanalysis and a fully coupled chemistry–climate simulation with the Community Earth System Model (CESM1(WACCM)) of the National Center for Atmospheric Research (NCAR), we find two downward wave reflection effects on ozone: (1) the direct effect in which the residual circulation is weakened during w...
The influence of the Arctic Oscillation (AO) on the vertical distribution of stratospheric ozone in ...
Record Arctic ozone loss in spring 2011 occurred in concert with record positive values of the tropo...
In the Arctic stratosphere, total column ozone in the spring can vary, from year to year, by as much...
Ozone in the Arctic stratosphere is subject to large interannual variability, driven by both chemica...
Stratospheric variability plays an important role in driving the weather and climate of the Earth s...
It is well established that interannual variability of eddy (meridional) heat flux near the tropopau...
There is evidence that the strengthened stratospheric westerlies arising from the Antarctic ozone ho...
Arctic stratospheric ozone has been shown to exert a statistically significant influence on Northern...
The radiative effects induced by the zonally asymmetric part of the ozone field have been shown to s...
Arctic warming was more pronounced than warming in midlatitudes in the last decades making this regi...
Large-scale chemical depletion of ozone due to anthropogenic emissions occurs over Antarctica as wel...
The Arctic stratospheric polar vortex is an important driver of mid-latitude winter cold spells. One...
Breaking planetary waves (BPWs) affect stratospheric dynamics by reshaping the waveguides, causing i...
The Northern Hemisphere and tropical circulation response to interannual variability in Arctic strat...
The impact of projected Arctic sea ice loss on the stratosphere is investigated using the Whole Atmo...
The influence of the Arctic Oscillation (AO) on the vertical distribution of stratospheric ozone in ...
Record Arctic ozone loss in spring 2011 occurred in concert with record positive values of the tropo...
In the Arctic stratosphere, total column ozone in the spring can vary, from year to year, by as much...
Ozone in the Arctic stratosphere is subject to large interannual variability, driven by both chemica...
Stratospheric variability plays an important role in driving the weather and climate of the Earth s...
It is well established that interannual variability of eddy (meridional) heat flux near the tropopau...
There is evidence that the strengthened stratospheric westerlies arising from the Antarctic ozone ho...
Arctic stratospheric ozone has been shown to exert a statistically significant influence on Northern...
The radiative effects induced by the zonally asymmetric part of the ozone field have been shown to s...
Arctic warming was more pronounced than warming in midlatitudes in the last decades making this regi...
Large-scale chemical depletion of ozone due to anthropogenic emissions occurs over Antarctica as wel...
The Arctic stratospheric polar vortex is an important driver of mid-latitude winter cold spells. One...
Breaking planetary waves (BPWs) affect stratospheric dynamics by reshaping the waveguides, causing i...
The Northern Hemisphere and tropical circulation response to interannual variability in Arctic strat...
The impact of projected Arctic sea ice loss on the stratosphere is investigated using the Whole Atmo...
The influence of the Arctic Oscillation (AO) on the vertical distribution of stratospheric ozone in ...
Record Arctic ozone loss in spring 2011 occurred in concert with record positive values of the tropo...
In the Arctic stratosphere, total column ozone in the spring can vary, from year to year, by as much...