TY - JOUR
T1 - Miocene to recent ice elevation variations from the interior of the West Antarctic ice sheet
T2 - Constraints from geologic observations, cosmogenic nuclides and ice sheet modeling
AU - Mukhopadhyay, Sujoy
AU - Ackert, Robert P.
AU - Pope, Allen E.
AU - Pollard, David
AU - DeConto, Robert M.
N1 - Funding Information:
Logistical support for the fieldwork was provided by Raytheon Polar services, Air National Guard, and Ken Borak Air . SM and RPA specially acknowledge the help and support from Peter Braddock and Aaron Putnam during the fieldwork in the Ohio Range. This work was funded by US National Foundation grants ANT-0338271 , ATM-0513402/0513421 , ANT-034248, and ANT-0424589 . We thank Bernard Marty and an anonymous reviewer for comments that helped to improve the manuscript.
PY - 2012/7/1
Y1 - 2012/7/1
N2 - Observations of long-term West Antarctic Ice Sheet (WAIS) behavior can be used to test and constrain dynamic ice sheet models. Long-term observational constraints are however, rare. Here we present the first constraints on long-term (Miocene-Holocene) WAIS elevation from the interior of the ice sheet near the WAIS divide. We use geologic observations and measurements of cosmogenic 21Ne and 10Be in bedrock surfaces to constrain WAIS elevation variations to <160m above the present-day ice levels since 7Ma, and <110m above present-day ice levels since 5.4Ma. The cosmogenic nuclide data indicate that bedrock surfaces 35m above the present-day ice levels had near continuous exposure over the past 3.5Ma, requiring average interior WAIS elevations to have been similar to, or lower than present, since the beginning of the Pliocene warm period. We use a continental ice sheet model to simulate the history of ice cover at our sampling sites and thereby compute the expected concentration of the cosmogenic nuclides. The ice sheet model indicates that during the past 5Ma interior WAIS elevations of >65m above present-day ice levels at the Ohio Range occur only rarely during brief ice sheet highstands, consistent with the observed cosmogenic nuclide data. Furthermore, the model's prediction that highstand elevations have increased on average since the Pliocene is in good agreement with the cosmogenic nuclide data that indicate the highest ice elevation over the past 5Ma was reached during the highstand at 11ka. Since the simulated cosmogenic nuclide concentrations derived from the model's ice elevation history are in good agreement with our measurements, we suggest that the model's prediction of more frequent collapsed-WAIS states and smaller WAIS volumes during the Pliocene are also correct.
AB - Observations of long-term West Antarctic Ice Sheet (WAIS) behavior can be used to test and constrain dynamic ice sheet models. Long-term observational constraints are however, rare. Here we present the first constraints on long-term (Miocene-Holocene) WAIS elevation from the interior of the ice sheet near the WAIS divide. We use geologic observations and measurements of cosmogenic 21Ne and 10Be in bedrock surfaces to constrain WAIS elevation variations to <160m above the present-day ice levels since 7Ma, and <110m above present-day ice levels since 5.4Ma. The cosmogenic nuclide data indicate that bedrock surfaces 35m above the present-day ice levels had near continuous exposure over the past 3.5Ma, requiring average interior WAIS elevations to have been similar to, or lower than present, since the beginning of the Pliocene warm period. We use a continental ice sheet model to simulate the history of ice cover at our sampling sites and thereby compute the expected concentration of the cosmogenic nuclides. The ice sheet model indicates that during the past 5Ma interior WAIS elevations of >65m above present-day ice levels at the Ohio Range occur only rarely during brief ice sheet highstands, consistent with the observed cosmogenic nuclide data. Furthermore, the model's prediction that highstand elevations have increased on average since the Pliocene is in good agreement with the cosmogenic nuclide data that indicate the highest ice elevation over the past 5Ma was reached during the highstand at 11ka. Since the simulated cosmogenic nuclide concentrations derived from the model's ice elevation history are in good agreement with our measurements, we suggest that the model's prediction of more frequent collapsed-WAIS states and smaller WAIS volumes during the Pliocene are also correct.
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U2 - 10.1016/j.epsl.2012.05.015
DO - 10.1016/j.epsl.2012.05.015
M3 - Article
AN - SCOPUS:84863097755
SN - 0012-821X
VL - 337-338
SP - 243
EP - 251
JO - Earth and Planetary Science Letters
JF - Earth and Planetary Science Letters
ER -