A comprehensive stratosphere-resolving atmospheric model, with interactive stratospheric ozone chemistry, coupled to ocean, sea ice and land components is used to explore the tropospheric and surface impacts of large springtime ozone anomalies in the Arctic stratosphere. Coupling between the Antarctic ozone hole and Southern Hemisphere climate has been identified in numerous studies, but connections of Arctic ozone loss to surface climate have been more difficult to elucidate. Analyzing an ensemble of historical integrations with all known natural and anthropogenic forcings specified over the period 1955-2005, we find that extremely low stratospheric ozone changes are able to produce large and robust anomalies in tropospheric wind, temperat...
The Arctic has experienced several extreme springtime stratospheric ozone depletion events over the ...
This thesis details a number of the effects that changes in the abundance of stratospheric ozone ove...
Thesis: Ph. D. in Climate Science, Massachusetts Institute of Technology, Department of Earth, Atmos...
A comprehensive stratosphere-resolving atmospheric model, with interactive stratospheric ozone chemi...
A comprehensive stratosphere-resolving atmospheric model, with interactive stratospheric ozone chemi...
In the Arctic stratosphere, total column ozone in the spring can vary, from year to year, by as much...
We present observational evidence for linkages between extreme Arctic stratospheric ozone anomalies ...
Large-scale chemical depletion of ozone due to anthropogenic emissions occurs over Antarctica as wel...
We present observational evidence for linkages between extreme Arctic stratospheric ozone anomalies ...
Links between springtime Arctic stratospheric ozone anomalies and anomalous surface weather in the N...
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...
Whether stratospheric cooling due to increases in well-mixed greenhouse gases (WMGHG) could increase...
Large-scale chemical depletion of ozone due to anthropogenic emissions occurs over Antarctica as wel...
Arctic warming was more pronounced than warming in midlatitudes in the last decades making this regi...
The Arctic has experienced several extreme springtime stratospheric ozone depletion events over the ...
This thesis details a number of the effects that changes in the abundance of stratospheric ozone ove...
Thesis: Ph. D. in Climate Science, Massachusetts Institute of Technology, Department of Earth, Atmos...
A comprehensive stratosphere-resolving atmospheric model, with interactive stratospheric ozone chemi...
A comprehensive stratosphere-resolving atmospheric model, with interactive stratospheric ozone chemi...
In the Arctic stratosphere, total column ozone in the spring can vary, from year to year, by as much...
We present observational evidence for linkages between extreme Arctic stratospheric ozone anomalies ...
Large-scale chemical depletion of ozone due to anthropogenic emissions occurs over Antarctica as wel...
We present observational evidence for linkages between extreme Arctic stratospheric ozone anomalies ...
Links between springtime Arctic stratospheric ozone anomalies and anomalous surface weather in the N...
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...
Whether stratospheric cooling due to increases in well-mixed greenhouse gases (WMGHG) could increase...
Large-scale chemical depletion of ozone due to anthropogenic emissions occurs over Antarctica as wel...
Arctic warming was more pronounced than warming in midlatitudes in the last decades making this regi...
The Arctic has experienced several extreme springtime stratospheric ozone depletion events over the ...
This thesis details a number of the effects that changes in the abundance of stratospheric ozone ove...
Thesis: Ph. D. in Climate Science, Massachusetts Institute of Technology, Department of Earth, Atmos...