Changes in stratospheric ozone concentrations and increasing concentrations of greenhouse gases (GHGs) alter the temperature structure of the atmosphere and drive changes in the atmospheric and oceanic circulation. We systematically investigate the impacts of ozone recovery and increasing GHGs on the atmospheric and oceanic circulation in the Southern Hemisphere during the twenty-first century using a unique coupled ocean-atmosphere climate model with interactive ozone chemistry and enhanced oceanic resolution. We use the high-emission scenario SSP5-8.5 for GHGs under which the springtime Antarctic total column ozone returns to 1980s levels by 2048 in our model, warming the lower stratosphere and strengthening the stratospheric westerly winds. We perform a spatial analysis and show for the first time that the austral spring stratospheric response to GHGs exhibits a marked planetary wavenumber 1 (PW1) pattern, which reinforces the response to ozone recovery over the Western Hemisphere and weakens it over the Eastern Hemisphere. These changes, which imply an eastward phase shift in the PW1, largely cancel out in the zonal mean. The Southern Hemisphere residual circulation strengthens during most of the year due to the increase in GHGs and weakens in spring due to ozone recovery. However, we find that in November the GHGs also drive a weakening of the residual circulation, reinforcing the effect of ozone recovery, which represents another novel result. At the surface, the westerly winds weaken and shift equatorward due to ozone recovery, driving a weak decrease in the transport of the Antarctic Circumpolar Current and in the Agulhas leakage and a cooling of the upper ocean, which is most pronounced in the latitudinal band 35-45 circle S. The increasing GHGs drive changes in the opposite direction that overwhelm the ozone effect. The total changes at the surface and in the oceanic circulation are nevertheless weaker in the presence of ozone recovery than those induced by GHGs alone, highlighting the importance of the Montreal Protocol in mitigating some of the impacts of climate change. We additionally compare the combined effect of interactively calculated ozone recovery and increasing GHGs with their combined effect in an ensemble in which we prescribe the CMIP6 ozone field. This second ensemble simulates a weaker ozone effect in all the examined fields, consistent with its weaker increase in ozone. The magnitude of the difference between the simulated changes at the surface and in the oceanic circulation in the two ensembles is as large as the ozone effect itself. This shows the large uncertainty that is associated with the choice of the ozone field and how the ozone is treated.
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College of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, ORCollege of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR
Clark P.U.
Shakun J.D.
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Department of Earth and Environmental Sciences, Boston College, Chestnut Hill, 02467, MACollege of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR
Shakun J.D.
Marcott S.A.
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Department of Geoscience, University of Wisconsin, Madison, 53706, WICollege of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR
Marcott S.A.
Mix A.C.
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College of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, ORCollege of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR
Mix A.C.
Eby M.
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School of Earth and Ocean Sciences, University of Victoria, Victoria, V8W 3P6, BC
Department of Geography, Simon Fraser University, Burnaby, V5A 1S6, BCCollege of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR
Eby M.
Kulp S.
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Climate Central, Princeton, 08542, NJCollege of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR
Kulp S.
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Levermann A.
Milne G.A.
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Department of Earth and Environmental Sciences, University of Ottawa, Ottawa, K1N 6N5, ONCollege of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR
Milne G.A.
Pfister P.L.
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Climate and Environmental Physics, University of Bern, Sidlerstrasse 5, BernCollege of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR
Pfister P.L.
Santer B.D.
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Program for Climate Model Diagnosis and Intercomparison, Lawrence Livermore National Laboratory, Livermore, 94550, CACollege of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR
Santer B.D.
Schrag D.P.
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Department of Earth and Planetary Sciences, Harvard University, Cambridge, 02138, MACollege of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR
Schrag D.P.
Solomon S.
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Department of Earth Atmospheric and Planetary Sciences, Massachusetts Institute of Technology, Cambridge, 02139, MACollege of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR
Solomon S.
Stocker T.F.
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Climate and Environmental Physics, University of Bern, Sidlerstrasse 5, Bern
Oeschger Center for Climate Change Research, Zahringerstrasse 25, BernCollege of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR
Stocker T.F.
Strauss B.H.
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Climate Central, Princeton, 08542, NJCollege of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR
Strauss B.H.
Weaver A.J.
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School of Earth and Ocean Sciences, University of Victoria, Victoria, V8W 3P6, BCCollege of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR
Weaver A.J.
Winkelmann R.
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Potsdam Institute for Climate Impact Research, PotsdamCollege of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR
Winkelmann R.
Archer D.
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Department of Geophysical Sciences, University of Chicago, Chicago, 60637, ILCollege of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR
Archer D.
Bard E.
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CEREGE, Aix-Marseille University-CNRS-IRD, College de France, Technopole de l'Arbois, BP 80, Aix-en-Provence Cedex 4College of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR
Bard E.
Goldner A.
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AAAS Science and Technology Fellow, Washington, 20001, DCCollege of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR
Goldner A.
Lambeck K.
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Research School of Earth Sciences, Australian National University, Canberra, 0200, ACT
Laboratoire de Géologie de l'École Normale Supérieure, UMR 8538 du CNRS, ParisCollege of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR
Lambeck K.
Pierrehumbert R.T.
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Department of Physics, Oxford University, OxfordCollege of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR
Pierrehumbert R.T.
Plattner G.-K.
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Climate and Environmental Physics, University of Bern, Sidlerstrasse 5, BernCollege of Earth Ocean, and Atmospheric Sciences, Oregon State University, Corvallis, 97331, OR