Scars of tectonism promote ice-sheet nucleation from Hercules Dome into West Antarctica

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作者
Andrew O. Hoffman
Nicholas Holschuh
Megan Mueller
John Paden
Atsuhiro Muto
Gordon Ariho
Cassandra Brigham
John Erich Christian
Lindsey Davidge
Emma Heitmann
Benjamin Hills
Annika Horlings
Susannah Morey
Gemma O’Connor
T. J. Fudge
Eric J. Steig
Knut Christianson
机构
[1] Columbia University,Lamont Doherty Earth Observatory
[2] Amherst College,Department of Geology
[3] The University of Texas at Austin,Jackson School of Geosciences
[4] University of Kansas,The Center for Remote Sensing and Integrated Systems (CReSIS)
[5] Temple University,Department of Earth and Environmental Science
[6] University of Washington,Department of Earth and Space Sciences
[7] Georgia Institute of Technology,School of Earth and Atmospheric Sciences
[8] University of Texas at Austin,Institute for Geophysics
来源
Nature Geoscience | 2023年 / 16卷
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摘要
Geology and bed topography influence how ice sheets respond to climate change. Despite the West Antarctic Ice Sheet’s capacity to retreat and advance quickly over its over-deepened interior, little is known about the subglacial landscape of the East Antarctic elevated interior that probably seeded West Antarctic ice streams and glaciers. At Hercules Dome, we use three-dimensional swath radar technology to image the upstream origin of large subglacial basins that drain ice from the Antarctic interior into West Antarctic ice streams. Radar imaging reveals an ancient, alpine landscape with hanging tributary valleys and large U-shaped valleys. On the valley floors, we image subglacial landforms that are typically associated with temperate basal conditions and fast ice flow. Formation mechanisms for these subglacial landforms are fundamentally inconsistent with the currently slowly flowing ice. Regional aerogravity shows that these valleys feed into larger subglacial basins that host thick sediment columns. Past tectonism probably created these basins and promoted ice flow from Hercules Dome into the Ross and Filchner–Ronne sectors. This suggests that the landscape at Hercules Dome was shaped by fast-flowing ice in the past when the area may have served as or been proximal to a nucleation centre for the West Antarctic Ice Sheet.
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页码:1005 / 1013
页数:8
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