Late Quaternary dynamics of the Lambert Glacier-Amery Ice Shelf system, East Antarctica

The Lambert Glacier-Amery Ice Shelf system (LGAISS) is the largest outlet glacier system in East Antarctica but its response to past climate variability is poorly constrained. In this study, we explore its dynamics over the last ∼520 thousand years using new high-resolution sedimentary records retri...

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Main Authors: Wu, Li, Wilson, David J., Wang, Rujian, Passchier, Sandra, Krijgsman, Wout, Yu, Xun, Wen, Tingyu, Xiao, Wenshen, Liu, Zhifei
Other Authors: Paleomagnetism
Language:English
Published: 2021
Subjects:
Online Access:https://dspace.library.uu.nl/handle/1874/410725
id ftunivutrecht:oai:dspace.library.uu.nl:1874/410725
record_format openpolar
spelling ftunivutrecht:oai:dspace.library.uu.nl:1874/410725 2023-12-10T09:39:28+01:00 Late Quaternary dynamics of the Lambert Glacier-Amery Ice Shelf system, East Antarctica Wu, Li Wilson, David J. Wang, Rujian Passchier, Sandra Krijgsman, Wout Yu, Xun Wen, Tingyu Xiao, Wenshen Liu, Zhifei Paleomagnetism 2021-01-15 application/pdf https://dspace.library.uu.nl/handle/1874/410725 eng eng https://dspace.library.uu.nl/handle/1874/410725 info:eu-repo/semantics/OpenAccess 2021 ftunivutrecht 2023-11-15T23:14:59Z The Lambert Glacier-Amery Ice Shelf system (LGAISS) is the largest outlet glacier system in East Antarctica but its response to past climate variability is poorly constrained. In this study, we explore its dynamics over the last ∼520 thousand years using new high-resolution sedimentary records retrieved off Prydz Bay. Episodic occurrences of iceberg rafted debris indicate a dynamic ice sheet throughout this interval, while changes in clay mineral compositions provide detailed evidence on the waxing and waning of the LGAISS. Our data indicate that advance and retreat of the LGAISS was sensitive to oceanic forcing, but also responded to local summer insolation when insolation peaks combined with interglacial sea level high stands. Subglacial bed topography may have played an additional role in modulating the LGAISS behaviour, which could explain sectoral differences in the response of the East Antarctic Ice Sheet to climate change. Overall, our records indicate that the LGAISS advanced more extensively during previous late Quaternary glacial periods than during Marine Isotope Stages 2 and 4. Furthermore, the LGAISS retreated more significantly than present during Marine Isotope Stage 13, and only moderately during Marine Isotope Stage 7, which suggests that the duration of warm climatic states could be a key factor affecting the dynamics of the East Antarctic Ice Sheet. Other/Unknown Material Amery Ice Shelf Antarc* Antarctic Antarctica East Antarctica Ice Sheet Ice Shelf Iceberg* Lambert Glacier Prydz Bay Utrecht University Repository Amery ENVELOPE(-94.063,-94.063,56.565,56.565) Amery Ice Shelf ENVELOPE(71.000,71.000,-69.750,-69.750) Antarctic East Antarctic Ice Sheet East Antarctica Lambert Glacier ENVELOPE(67.490,67.490,-73.065,-73.065) Prydz Bay
institution Open Polar
collection Utrecht University Repository
op_collection_id ftunivutrecht
language English
description The Lambert Glacier-Amery Ice Shelf system (LGAISS) is the largest outlet glacier system in East Antarctica but its response to past climate variability is poorly constrained. In this study, we explore its dynamics over the last ∼520 thousand years using new high-resolution sedimentary records retrieved off Prydz Bay. Episodic occurrences of iceberg rafted debris indicate a dynamic ice sheet throughout this interval, while changes in clay mineral compositions provide detailed evidence on the waxing and waning of the LGAISS. Our data indicate that advance and retreat of the LGAISS was sensitive to oceanic forcing, but also responded to local summer insolation when insolation peaks combined with interglacial sea level high stands. Subglacial bed topography may have played an additional role in modulating the LGAISS behaviour, which could explain sectoral differences in the response of the East Antarctic Ice Sheet to climate change. Overall, our records indicate that the LGAISS advanced more extensively during previous late Quaternary glacial periods than during Marine Isotope Stages 2 and 4. Furthermore, the LGAISS retreated more significantly than present during Marine Isotope Stage 13, and only moderately during Marine Isotope Stage 7, which suggests that the duration of warm climatic states could be a key factor affecting the dynamics of the East Antarctic Ice Sheet.
author2 Paleomagnetism
author Wu, Li
Wilson, David J.
Wang, Rujian
Passchier, Sandra
Krijgsman, Wout
Yu, Xun
Wen, Tingyu
Xiao, Wenshen
Liu, Zhifei
spellingShingle Wu, Li
Wilson, David J.
Wang, Rujian
Passchier, Sandra
Krijgsman, Wout
Yu, Xun
Wen, Tingyu
Xiao, Wenshen
Liu, Zhifei
Late Quaternary dynamics of the Lambert Glacier-Amery Ice Shelf system, East Antarctica
author_facet Wu, Li
Wilson, David J.
Wang, Rujian
Passchier, Sandra
Krijgsman, Wout
Yu, Xun
Wen, Tingyu
Xiao, Wenshen
Liu, Zhifei
author_sort Wu, Li
title Late Quaternary dynamics of the Lambert Glacier-Amery Ice Shelf system, East Antarctica
title_short Late Quaternary dynamics of the Lambert Glacier-Amery Ice Shelf system, East Antarctica
title_full Late Quaternary dynamics of the Lambert Glacier-Amery Ice Shelf system, East Antarctica
title_fullStr Late Quaternary dynamics of the Lambert Glacier-Amery Ice Shelf system, East Antarctica
title_full_unstemmed Late Quaternary dynamics of the Lambert Glacier-Amery Ice Shelf system, East Antarctica
title_sort late quaternary dynamics of the lambert glacier-amery ice shelf system, east antarctica
publishDate 2021
url https://dspace.library.uu.nl/handle/1874/410725
long_lat ENVELOPE(-94.063,-94.063,56.565,56.565)
ENVELOPE(71.000,71.000,-69.750,-69.750)
ENVELOPE(67.490,67.490,-73.065,-73.065)
geographic Amery
Amery Ice Shelf
Antarctic
East Antarctic Ice Sheet
East Antarctica
Lambert Glacier
Prydz Bay
geographic_facet Amery
Amery Ice Shelf
Antarctic
East Antarctic Ice Sheet
East Antarctica
Lambert Glacier
Prydz Bay
genre Amery Ice Shelf
Antarc*
Antarctic
Antarctica
East Antarctica
Ice Sheet
Ice Shelf
Iceberg*
Lambert Glacier
Prydz Bay
genre_facet Amery Ice Shelf
Antarc*
Antarctic
Antarctica
East Antarctica
Ice Sheet
Ice Shelf
Iceberg*
Lambert Glacier
Prydz Bay
op_relation https://dspace.library.uu.nl/handle/1874/410725
op_rights info:eu-repo/semantics/OpenAccess
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