Holocene thinning of Darwin and Hatherton glaciers, Antarctica, and implications for grounding-line retreat in the Ross Sea
<p>Chronologies of glacier deposits in the Transantarctic Mountains provide important constraints on grounding-line retreat during the last deglaciation in the Ross Sea. However, between Beardmore Glacier and Ross Island – a distance of some 600 km – the existing chronologies are generally spa...
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doaj-a1533c7edfcd40808366db667d6894e32021-07-20T07:40:00ZengCopernicus PublicationsThe Cryosphere1994-04161994-04242021-07-01153329335410.5194/tc-15-3329-2021Holocene thinning of Darwin and Hatherton glaciers, Antarctica, and implications for grounding-line retreat in the Ross SeaT. R. Hillebrand0T. R. Hillebrand1J. O. Stone2M. Koutnik3C. King4H. Conway5B. Hall6K. Nichols7B. Goehring8M. K. Gillespie9Department of Earth and Space Sciences, University of Washington, Seattle, WA 98195, USA now at: Fluid Dynamics and Solid Mechanics Group, Los Alamos National Laboratory, Los Alamos, NM 87545, USADepartment of Earth and Space Sciences, University of Washington, Seattle, WA 98195, USA Department of Earth and Space Sciences, University of Washington, Seattle, WA 98195, USA School of Earth and Climate Science and Climate Change Institute, University of Maine, Orono, ME 04469, USADepartment of Earth and Space Sciences, University of Washington, Seattle, WA 98195, USA School of Earth and Climate Science and Climate Change Institute, University of Maine, Orono, ME 04469, USADepartment of Earth and Environmental Sciences, Tulane University, New Orleans, LA 70118, USADepartment of Earth and Environmental Sciences, Tulane University, New Orleans, LA 70118, USAFaculty of Engineering and Science, Western Norway University of Applied Sciences, Sogndal, 6856, Norway<p>Chronologies of glacier deposits in the Transantarctic Mountains provide important constraints on grounding-line retreat during the last deglaciation in the Ross Sea. However, between Beardmore Glacier and Ross Island – a distance of some 600 km – the existing chronologies are generally sparse and far from the modern grounding line, leaving the past dynamics of this vast region largely unconstrained. We present exposure ages of glacial deposits at three locations alongside the Darwin–Hatherton Glacier System – including within 10 km of the modern grounding line – that record several hundred meters of Late Pleistocene to Early Holocene thickening relative to present. As the ice sheet grounding line in the Ross Sea retreated, Hatherton Glacier thinned steadily from about 9 until about 3 ka. Our data are equivocal about the maximum thickness and Mid-Holocene to Early Holocene history at the mouth of Darwin Glacier, allowing for two conflicting deglaciation scenarios: (1) <span class="inline-formula">∼500</span> m of thinning from 9 to 3 ka, similar to Hatherton Glacier, or (2) <span class="inline-formula">∼950</span> m of thinning, with a rapid pulse of <span class="inline-formula">∼600</span> m thinning at around 5 ka. We test these two scenarios using a 1.5-dimensional flowband model, forced by ice thickness changes at the mouth of Darwin Glacier and evaluated by fit to the chronology of deposits at Hatherton Glacier. The constraints from Hatherton Glacier are consistent with the interpretation that the mouth of Darwin Glacier thinned steadily by <span class="inline-formula">∼500</span> m from 9 to 3 ka. Rapid pulses of thinning at the mouth of Darwin Glacier are ruled out by the data at Hatherton Glacier. This contrasts with some of the available records from the mouths of other outlet glaciers in the Transantarctic Mountains, many of which thinned by hundreds of meters over roughly a 1000-year period in the Early Holocene. The deglaciation histories of Darwin and Hatherton glaciers are best matched by a steady decrease in catchment area through the Holocene, suggesting that Byrd and/or Mulock glaciers may have captured roughly half of the catchment area of Darwin and Hatherton glaciers during the last deglaciation. An ensemble of three-dimensional ice sheet model simulations suggest that Darwin and Hatherton glaciers are strongly buttressed by convergent flow with ice from neighboring Byrd and Mulock glaciers, and by lateral drag past Minna Bluff, which could have led to a pattern of retreat distinct from other glaciers throughout the Transantarctic Mountains.</p>https://tc.copernicus.org/articles/15/3329/2021/tc-15-3329-2021.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
T. R. Hillebrand T. R. Hillebrand J. O. Stone M. Koutnik C. King H. Conway B. Hall K. Nichols B. Goehring M. K. Gillespie |
spellingShingle |
T. R. Hillebrand T. R. Hillebrand J. O. Stone M. Koutnik C. King H. Conway B. Hall K. Nichols B. Goehring M. K. Gillespie Holocene thinning of Darwin and Hatherton glaciers, Antarctica, and implications for grounding-line retreat in the Ross Sea The Cryosphere |
author_facet |
T. R. Hillebrand T. R. Hillebrand J. O. Stone M. Koutnik C. King H. Conway B. Hall K. Nichols B. Goehring M. K. Gillespie |
author_sort |
T. R. Hillebrand |
title |
Holocene thinning of Darwin and Hatherton glaciers, Antarctica, and implications for grounding-line retreat in the Ross Sea |
title_short |
Holocene thinning of Darwin and Hatherton glaciers, Antarctica, and implications for grounding-line retreat in the Ross Sea |
title_full |
Holocene thinning of Darwin and Hatherton glaciers, Antarctica, and implications for grounding-line retreat in the Ross Sea |
title_fullStr |
Holocene thinning of Darwin and Hatherton glaciers, Antarctica, and implications for grounding-line retreat in the Ross Sea |
title_full_unstemmed |
Holocene thinning of Darwin and Hatherton glaciers, Antarctica, and implications for grounding-line retreat in the Ross Sea |
title_sort |
holocene thinning of darwin and hatherton glaciers, antarctica, and implications for grounding-line retreat in the ross sea |
publisher |
Copernicus Publications |
series |
The Cryosphere |
issn |
1994-0416 1994-0424 |
publishDate |
2021-07-01 |
description |
<p>Chronologies of glacier deposits in the Transantarctic Mountains provide important constraints on grounding-line retreat during the last deglaciation in the Ross Sea. However, between Beardmore Glacier and Ross Island – a distance of some 600 km – the existing chronologies are generally sparse and far from the modern grounding line, leaving the past dynamics of this vast region largely unconstrained. We present exposure ages of glacial deposits at three locations alongside the Darwin–Hatherton Glacier System – including within 10 km of the modern grounding line – that record several hundred meters of Late Pleistocene to Early Holocene thickening relative to present. As the ice sheet grounding line in the Ross Sea retreated, Hatherton Glacier thinned steadily from about 9 until about 3 ka. Our data are equivocal about the maximum thickness and Mid-Holocene to Early Holocene history at the mouth of Darwin Glacier, allowing for two conflicting deglaciation scenarios: (1) <span class="inline-formula">∼500</span> m of thinning from 9 to 3 ka, similar to Hatherton Glacier, or (2) <span class="inline-formula">∼950</span> m of thinning, with a rapid pulse of <span class="inline-formula">∼600</span> m thinning at around 5 ka. We test these two scenarios using a 1.5-dimensional flowband model, forced by ice thickness changes at the mouth of Darwin Glacier and evaluated by fit to the chronology of deposits at Hatherton Glacier. The constraints from Hatherton Glacier are consistent with the interpretation that the mouth of Darwin Glacier thinned steadily by <span class="inline-formula">∼500</span> m from 9 to 3 ka. Rapid pulses of thinning at the mouth of Darwin Glacier are ruled out by the data at Hatherton Glacier. This contrasts with some of the available records from the mouths of other outlet glaciers in the Transantarctic Mountains, many of which thinned by hundreds of meters over roughly a 1000-year period in the Early Holocene. The deglaciation histories of Darwin and Hatherton glaciers are best matched by a steady decrease in catchment area through the Holocene, suggesting that Byrd and/or Mulock glaciers may have captured roughly half of the catchment area of Darwin and Hatherton glaciers during the last deglaciation. An ensemble of three-dimensional ice sheet model simulations suggest that Darwin and Hatherton glaciers are strongly buttressed by convergent flow with ice from neighboring Byrd and Mulock glaciers, and by lateral drag past Minna Bluff, which could have led to a pattern of retreat distinct from other glaciers throughout the Transantarctic Mountains.</p> |
url |
https://tc.copernicus.org/articles/15/3329/2021/tc-15-3329-2021.pdf |
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