Large-scale chemical depletion of ozone due to anthropogenic emissions occurs over Antarctica as well as, to a lesser degree, the Arctic. Surface climate predictability in the Northern Hemisphere might be improved due to a previously proposed, albeit uncertain, link to springtime ozone depletion in the Arctic. Here we use observations and targeted chemistry–climate experiments from two models to isolate the surface impacts of ozone depletion from complex downward dynamical influences. We find that springtime stratospheric ozone depletion is consistently followed by surface temperature and precipitation anomalies with signs consistent with a positive Arctic Oscillation, namely, warm and dry conditions over southern Europe and Eurasia and moi...
Arctic stratospheric ozone has been shown to exert a statistically significant influence on Northern...
Recent observational and modeling studies suggest that stratospheric ozone depletion not only influe...
Severe ozone depletion in the polar lower stratosphere has been linked to significant changes in tro...
Large-scale chemical depletion of ozone due to anthropogenic emissions occurs over Antarctica as wel...
Large-scale chemical depletion of ozone due to anthropogenic emissions occurs over Antarctica as wel...
Links between springtime Arctic stratospheric ozone anomalies and anomalous surface weather in the N...
A comprehensive stratosphere-resolving atmospheric model, with interactive stratospheric ozone chemi...
Ozone in the Arctic stratosphere is subject to large interannual variability, driven by both chemica...
In the Arctic stratosphere, total column ozone in the spring can vary, from year to year, by as much...
A comprehensive stratosphere-resolving atmospheric model, with interactive stratospheric ozone chemi...
A comprehensive stratosphere-resolving atmospheric model, with interactive stratospheric ozone chemi...
We present observational evidence for linkages between extreme Arctic stratospheric ozone anomalies ...
We present observational evidence for linkages between extreme Arctic stratospheric ozone anomalies ...
Whether stratospheric cooling due to increases in well-mixed greenhouse gases (WMGHG) could increase...
After the well-reported record loss of Arctic stratospheric ozone of up to 38% in the winter 2010–20...
Arctic stratospheric ozone has been shown to exert a statistically significant influence on Northern...
Recent observational and modeling studies suggest that stratospheric ozone depletion not only influe...
Severe ozone depletion in the polar lower stratosphere has been linked to significant changes in tro...
Large-scale chemical depletion of ozone due to anthropogenic emissions occurs over Antarctica as wel...
Large-scale chemical depletion of ozone due to anthropogenic emissions occurs over Antarctica as wel...
Links between springtime Arctic stratospheric ozone anomalies and anomalous surface weather in the N...
A comprehensive stratosphere-resolving atmospheric model, with interactive stratospheric ozone chemi...
Ozone in the Arctic stratosphere is subject to large interannual variability, driven by both chemica...
In the Arctic stratosphere, total column ozone in the spring can vary, from year to year, by as much...
A comprehensive stratosphere-resolving atmospheric model, with interactive stratospheric ozone chemi...
A comprehensive stratosphere-resolving atmospheric model, with interactive stratospheric ozone chemi...
We present observational evidence for linkages between extreme Arctic stratospheric ozone anomalies ...
We present observational evidence for linkages between extreme Arctic stratospheric ozone anomalies ...
Whether stratospheric cooling due to increases in well-mixed greenhouse gases (WMGHG) could increase...
After the well-reported record loss of Arctic stratospheric ozone of up to 38% in the winter 2010–20...
Arctic stratospheric ozone has been shown to exert a statistically significant influence on Northern...
Recent observational and modeling studies suggest that stratospheric ozone depletion not only influe...
Severe ozone depletion in the polar lower stratosphere has been linked to significant changes in tro...