Reconstructing the post-LGM deglacial history of Hollingsworth Glacier on Ricker Hills, Transantarctic Mountains, Antarctica

Authors
RHEE, Hyun-HeeSEONG, Yeong-BaeWOO, Ju-SunOh, ChanghwanYU, Byung-Yong
Issue Date
2022-05
Publisher
Institute of Mountain Hazards and Environment, Chinese Academy of Sciences
Citation
Journal of Mountain Science, v.19, no.5, pp.1217 - 1230
Abstract
The Transantarctic Mountains are an important corridor between the East Antarctic Ice Sheet and the Western Ross Sea, where most current ice streams and outlet glaciers arise. We investigated Ricker Hills, the largest exposed mountainous region between Southern Victoria Land and Terra Nova Bay, and dated the glacial landforms using in-situ cosmogenic-nuclide Be-10 surface exposure dating to reconstruct the paleo-glacial dynamics. The surface of the Hollingsworth glacier lowered since the middle of Marine Isotope Stage (MIS) 2 (22.1 ka); therefore, the Last Glacial Maximum (LGM) occurred before that period. Cosmogenic, geomorphic, and climatic records constrained the glacial surface slope to be between 5.4 degrees and 6.8 degrees. The ice was 270-320 m thicker at the LGM (MIS 2) than presently but did not override the top surface of the Benson Knob. Moreover, previous glacial periods such as the local LGM (MIS 4) or Penultimate Glacial Maximum (MIS 6) maintained thicker ice than the LGM (MIS 2). The Ross Ice Shelf opening during the mid-Holocene (similar to 6 ka) caused the rapid collapse of the terminal outlet glaciers and supplied notable snow accumulation upstream, which stagnated lowering. The greatest lowering and retreat occurred during the late Holocene (2.3 similar to 0.8 ka), when elephant seal colonies thrived in the Ross Embayment.
Keywords
NORTHERN VICTORIA LAND; COSMOGENIC NUCLIDES DOCUMENT; SURFACE EXPOSURE AGES; ICE-SHEET; PRODUCTION-RATES; DAVID GLACIER; BE-10; GLACIATION; CLIMATE; BAY; East Antarctic Ice Sheet; Last Glacial Maximum; Deglaciation; Holocene; Cosmogenic nuclide exposure dating; Glacier reconstruction
ISSN
1672-6316
URI
https://pubs.kist.re.kr/handle/201004/115209
DOI
10.1007/s11629-022-7338-1
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KIST Article > 2022
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