The hysteresis behaviour of ice sheets arises because of the different thresholds for growth and decline of a continental-scale ice sheet depending on the initial conditions. In this study, the hysteresis effect of the early Cenozoic Antarctic ice sheet to different bedrock elevations is investigated with an improved ice sheet-climate coupling method that accurately captures the ice-albedo feedback. It is shown that the hysteresis effect of the early Cenozoic Antarctic ice sheet is similar to 180 ppmv or between 3.5 and 5 circle C, depending only weakly on the bedrock elevation dataset. Excluding isostatic adjustment decreases the hysteresis effect significantly towards similar to 40 ppmv because the transition to a glacial state can occur at a warmer level. The rapid transition from a glacial to a deglacial state and oppositely from deglacial to glacial conditions is strongly enhanced by the ice-albedo feedback, in combination with the elevation-surface mass balance feedback. Variations in the orbital parameters show that extreme values of the orbital parameters are able to exceed the threshold in summer insolation to induce a (de)glaciation. It appears that the long-term eccentricity cycle has a large influence on the ice sheet growth and decline and is able to pace the ice sheet evolution for constant CO 2 concentration close to the glaciation threshold.
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Australian Antarctic Div, Kingston, Tas 7050, Australia
Antarctic Climate & Ecosyst Cooperat Res Ctr, Hobart, Tas 7001, AustraliaUniv Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USA
Roberts, Jason L.
Warner, Roland C.
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Australian Antarctic Div, Kingston, Tas 7050, Australia
Antarctic Climate & Ecosyst Cooperat Res Ctr, Hobart, Tas 7001, AustraliaUniv Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USA
Warner, Roland C.
Young, Neal W.
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Australian Antarctic Div, Kingston, Tas 7050, Australia
Antarctic Climate & Ecosyst Cooperat Res Ctr, Hobart, Tas 7001, AustraliaUniv Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USA
Young, Neal W.
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Greenbaum, Jamin S.
Schroeder, Dustin M.
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Univ Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USAUniv Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USA
Schroeder, Dustin M.
Holt, John W.
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Univ Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USAUniv Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USA
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Univ Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USAUniv Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USA
Blankenship, Donald D.
van Ommen, Tas D.
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Australian Antarctic Div, Kingston, Tas 7050, Australia
Antarctic Climate & Ecosyst Cooperat Res Ctr, Hobart, Tas 7001, AustraliaUniv Texas Austin, Inst Geophys, Jackson Sch Geosci, Austin, TX 78758 USA
机构:
Columbia Univ, Lamont Doherty Earth Observ, Palisades, NY USAColumbia Univ, Lamont Doherty Earth Observ, Palisades, NY USA
Jacobs, Stan
Jenkins, Adrian
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British Antarctic Survey, Cambridge CB3 0ET, EnglandColumbia Univ, Lamont Doherty Earth Observ, Palisades, NY USA
Jenkins, Adrian
Hellmer, Hartmut
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Alfred Wegener Inst, Bremerhaven, GermanyColumbia Univ, Lamont Doherty Earth Observ, Palisades, NY USA
Hellmer, Hartmut
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Giulivi, Claudia
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Nitsche, Frank
Huber, Bruce
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Columbia Univ, Lamont Doherty Earth Observ, Palisades, NY USAColumbia Univ, Lamont Doherty Earth Observ, Palisades, NY USA
Huber, Bruce
Guerrero, Raul
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Inst Natl Invest Desarrollo Pesquero, Phys Oceanog Program, Mar Del Plata, Buenos Aires, ArgentinaColumbia Univ, Lamont Doherty Earth Observ, Palisades, NY USA