Can ozone depletion and global warming interact to produce rapid climate change?
- 15 February 2000
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 97 (4) , 1412-1417
- https://doi.org/10.1073/pnas.97.4.1412
Abstract
The atmosphere displays modes of variability whose structures exhibit a strong longitudinally symmetric (annular) component that extends from the surface to the stratosphere in middle and high latitudes of both hemispheres. In the past 30 years, these modes have exhibited trends that seem larger than their natural background variability, and may be related to human influences on stratospheric ozone and/or atmospheric greenhouse gas concentrations. The pattern of climate trends during the past few decades is marked by rapid cooling and ozone depletion in the polar lower stratosphere of both hemispheres, coupled with an increasing strength of the wintertime westerly polar vortex and a poleward shift of the westerly wind belt at the earth's surface. Annular modes of variability are fundamentally a result of internal dynamical feedbacks within the climate system, and as such can show a large response to rather modest external forcing. The dynamics and thermodynamics of these modes are such that strong synergistic interactions between stratospheric ozone depletion and greenhouse warming are possible. These interactions may be responsible for the pronounced changes in tropospheric and stratospheric climate observed during the past few decades. If these trends continue, they could have important implications for the climate of the 21st century.Keywords
This publication has 80 references indexed in Scilit:
- Stratospheric water vapour changes as a possible contributor to observed stratospheric coolingGeophysical Research Letters, 1999
- Eddies and the annular modes of climate variabilityGeophysical Research Letters, 1999
- The cold winters of the middle 1990s in the northern lower stratosphereJournal of Geophysical Research: Atmospheres, 1999
- Northern hemisphere winter circulation associated with the North Atlantic Oscillation and stratospheric polar‐night jetGeophysical Research Letters, 1999
- Changing lower stratospheric circulation: The role of ozone and greenhouse gasesJournal of Geophysical Research: Atmospheres, 1998
- Freshening of the upper ocean in the Arctic: Is perennial sea ice disappearing?Geophysical Research Letters, 1998
- Changes in upper stratospheric CH4 and NO2 as measured by HALOE and implications for changes in transportGeophysical Research Letters, 1998
- Interannual variability of the North Polar Vortex in the lower stratosphere during the UARS MissionGeophysical Research Letters, 1996
- Observed correlations between winter‐mean tropospheric and stratospheric circulation anomaliesGeophysical Research Letters, 1994
- The mystery of the Antarctic Ozone “Hole”Reviews of Geophysics, 1988