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Detailed ice loss pattern in the northern Antarctic Peninsula: widespread decline driven by ice front retreats

Scambos, T.A.; Berthier, E.; Haran, T.; Shuman, C.A.; Cook, A.J.; Ligtenberg, S.; Bohlander, J.

Detailed ice loss pattern in the northern Antarctic Peninsula: widespread decline driven by ice front retreats Thumbnail


Authors

T.A. Scambos

E. Berthier

T. Haran

C.A. Shuman

A.J. Cook

S. Ligtenberg

J. Bohlander



Abstract

The northern Antarctic Peninsula (nAP, < 66° S) is one of the most rapidly changing glaciated regions on earth, yet the spatial patterns of its ice mass loss at the glacier basin scale have to date been poorly documented. We use satellite laser altimetry and satellite stereo-image topography spanning 2001–2010, but primarily 2003–2008, to map ice elevation change and infer mass changes for 33 glacier basins covering the mainland and most large islands in the nAP. Rates of ice volume and ice mass change are 27.7± 8.6 km3 a−1 and 24.9± 7.8 Gt a−1, equal to −0.73 m a−1 w.e. for the study area. Mass loss is the highest for eastern glaciers affected by major ice shelf collapses in 1995 and 2002, where twelve glaciers account for 60% of the total imbalance. However, losses at smaller rates occur throughout the nAP, at both high and low elevation, despite increased snow accumulation along the western coast and ridge crest. We interpret the widespread mass loss to be driven by decades of ice front retreats on both sides of the nAP, and extended throughout the ice sheet due to the propagation of kinematic waves triggered at the fronts into the interior.

Citation

Scambos, T., Berthier, E., Haran, T., Shuman, C., Cook, A., Ligtenberg, S., & Bohlander, J. (2014). Detailed ice loss pattern in the northern Antarctic Peninsula: widespread decline driven by ice front retreats. The Cryosphere, 8(6), 2135-2145. https://doi.org/10.5194/tc-8-2135-2014

Journal Article Type Article
Acceptance Date Oct 16, 2014
Online Publication Date Nov 24, 2014
Publication Date Nov 24, 2014
Deposit Date Oct 7, 2015
Publicly Available Date Oct 14, 2016
Journal Cryosphere
Electronic ISSN 1994-0424
Publisher Copernicus Publications
Peer Reviewed Peer Reviewed
Volume 8
Issue 6
Pages 2135-2145
DOI https://doi.org/10.5194/tc-8-2135-2014

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