Continental breakup–driven uplift instigated East Antarctic Ice Sheet formation

Поднятие, вызванное распадом континента, послужило причиной формирования Восточно-Антарктического ледяного щита
Jean Braun, Derek Keir, Eelco J. Rohling, Philip Goodwin, Thomas Gernon, Guy J. G. Paxman, Thea Hincks, Sascha Brune
2026-07-02

East Antarctic Ice SheetGamburtsev Mountainscontinental breakupgeodynamic-topographic modelstopographic uplift
Why Antarctica became glaciated ∼34 million years ago (Ma) remains debated, as relatively warm climates and sea temperatures appear inconsistent with ice sheet formation. Although a critical decline in CO 2 is considered primarily responsible, evidence suggests that other factors were important, too. We investigated whether regional topographic uplift, rooted in Jurassic continental breakup and mantle-surface feedbacks, enabled nucleation of the East Antarctic Ice Sheet (EAIS). By integrating geodynamic-topographic models with ice sheet and energy balance models, we show that progressive plateau growth in East Antarctica, including Eocene uplift of the Gamburtsev Mountains, pushed landscapes above the threshold for ice sheet nucleation by ∼45 Ma. Uplift enabled EAIS growth under warmer-than-expected climates, producing hemispheric asymmetry in early glaciation and reconciling Oligocene polar warmth with the onset of the modern icehouse world.
1
Integrated geodynamic-topographic, ice sheet, and energy balance models show plateau growth, including Eocene uplift of the Gamburtsev Mountains, raised landscapes above the ice-sheet nucleation threshold by ~45 Ma.
2
Progressive regional topographic uplift in East Antarctica, driven by Jurassic continental breakup and mantle-surface feedbacks, enabled nucleation of the East Antarctic Ice Sheet (EAIS).
3
Topographic uplift produced hemispheric asymmetry in early glaciation, indicating regional factors beyond global CO2 decline were important for Antarctic glaciation.
4
Uplift allowed EAIS growth under warmer-than-expected climates, helping reconcile Oligocene polar warmth with the emergence of the modern icehouse world.

Topographic uplift of East Antarctica (including Eocene uplift of the Gamburtsev Mountains) driven by Jurassic continental breakup and mantle-surface feedbacks

Role of regional plateau growth/uplift in enabling nucleation and early growth of the East Antarctic Ice Sheet under warmer climates (timing, threshold crossing for ice-sheet nucleation, and resulting hemispheric asymmetry)

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2026-07-02
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Jean Braun
Derek Keir
Eelco J. Rohling
Philip Goodwin
Thomas Gernon
Guy J. G. Paxman
Thea Hincks
Sascha Brune
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