The maximum extent and elevation of the Greenland Ice Sheet in southwestern Greenland during the Last Glacial Maximum (LGM, 26–19.5 ka) is poorly constrained. Yet, the size of the Greenland Ice Sheet during the LGM helps to inform estimates of past ice-sheet sensitivity to climate change and provides benchmarks for ice-sheet modeling. Reconstructions of LGM ice extents vary between an inner continental shelf minimum, a mid-shelf position, and a maximum extent at the shelf break. We use three approaches to resolve LGM ice extent in the Sisimiut sector of southwestern Greenland. First, we explore the likelihood of minimum versus maximum Greenland Ice Sheet reconstructions using existing relative sea-level data. We use an empirical relationship between marine limit elevation and distance to LGM terminus established from other Northern Hemisphere Pleistocene ice sheets as context for interpreting marine limit data in southwestern Greenland. Our analysis supports a maximum regional Greenland Ice Sheet extent to the shelf break during the LGM. Second, we apply a simple 1-D crustal rebound model to simulate relative sea-level curves for contrasting ice-sheet sizes and compare these simulated curves with existing relative sea-level data. The only realistic ice-sheet configuration resulting in relative sea-level model-data fit suggests that the Greenland Ice Sheet terminated at the shelf break during the LGM. Lastly, we constrain the LGM ice-sheet thickness using cosmogenic 10Be, 26Al, and 14C exposure dating from two summit areas, one at 381 m above sea level at the coast, and another at 798 m asl 32 km inland. Twenty-four cosmogenic radionuclide measurements, combined with results of our first two approaches, reveal that our targeted summits were likely ice-covered during the LGM and became deglaciated at ca. 11.6 ka. Inventories of in situ 14C in bedrock at one summit point to a small degree of inherited 14C and suggest that the Greenland Ice Sheet advanced to its maximum late Pleistocene extent at 17.1 ± 2.5 ka. Our results point to a configuration where the southwestern part of the Greenland Ice Sheet reached its maximum LGM extent at the continental shelf break.
Research Article|
May 24, 2022
Evidence for a more extensive Greenland Ice Sheet in southwestern Greenland during the Last Glacial Maximum
Christopher M. Sbarra;
Christopher M. Sbarra
1
Department of Geology, 126 Cooke Hall, University at Buffalo, Buffalo, New York 14260, USA
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Jason P. Briner;
Jason P. Briner
1
Department of Geology, 126 Cooke Hall, University at Buffalo, Buffalo, New York 14260, USA
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Brandon L. Graham;
Brandon L. Graham
1
Department of Geology, 126 Cooke Hall, University at Buffalo, Buffalo, New York 14260, USA
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Kristin Poinar;
Kristin Poinar
1
Department of Geology, 126 Cooke Hall, University at Buffalo, Buffalo, New York 14260, USA
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Elizabeth K. Thomas;
Elizabeth K. Thomas
1
Department of Geology, 126 Cooke Hall, University at Buffalo, Buffalo, New York 14260, USA
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Nicolás E. Young
Nicolás E. Young
2
Lamont‐Doherty Earth Observatory, Columbia University, 61 Route 9W, Palisades, New York 10964, USA
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Geosphere (2022)
Article history
received:
12 Mar 2021
rev-recd:
04 Nov 2021
accepted:
23 Feb 2022
first online:
24 May 2022
Citation
Christopher M. Sbarra, Jason P. Briner, Brandon L. Graham, Kristin Poinar, Elizabeth K. Thomas, Nicolás E. Young; Evidence for a more extensive Greenland Ice Sheet in southwestern Greenland during the Last Glacial Maximum. Geosphere 2022; doi: https://doi.org/10.1130/GES02432.1
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