Deglaciation chronology of the Galloway Hills Ice Centre, southwest Scotland

ABSTRACT During the last glacial maximum, the Galloway Hills in southwest Scotland acted as a major centre of ice dispersion within the last British–Irish Ice Sheet (BIIS). Six new or recalibrated 10 Be exposure ages for samples obtained from boulders near the former ice divide yielded uncertainty‐w...

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Bibliographic Details
Published in:Journal of Quaternary Science
Main Authors: BALLANTYNE, COLIN K., RINTERKNECHT, VINCENT, GHEORGHIU, DELIA M.
Other Authors: NERC Cosmogenic Isotope Analysis Facility
Format: Article in Journal/Newspaper
Language:English
Published: Wiley 2013
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Online Access:http://dx.doi.org/10.1002/jqs.2635
https://api.wiley.com/onlinelibrary/tdm/v1/articles/10.1002%2Fjqs.2635
https://onlinelibrary.wiley.com/doi/pdf/10.1002/jqs.2635
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Summary:ABSTRACT During the last glacial maximum, the Galloway Hills in southwest Scotland acted as a major centre of ice dispersion within the last British–Irish Ice Sheet (BIIS). Six new or recalibrated 10 Be exposure ages for samples obtained from boulders near the former ice divide yielded uncertainty‐weighted mean ages of 15.15 ± 0.72 ka (Lm scaling), or 15.33 ± 0.74 ka (Du scaling). These ages indicate that the former ice dome centred over the Galloway Hills had almost (or completely) disappeared by ca. 15 ka, imply prior deglaciation of all of southwest Scotland and refute suggestions that ice cover persisted in this area during the Lateglacial Interstade. They strongly support recent models advocating extensive deglaciation of all areas occupied by the last BIIS (apart from the Scottish Highlands) prior to warming at the onset of the Lateglacial Interstade (ca. 14.7 ka). Three samples obtained from boulders on a large latero‐terminal moraine (Tauchers moraine) near the former ice divide yielded a weighted mean age of 11.91 ± 0.77 ka (Lm scaling) or 12.01 ± 0.78 ka (Du scaling), confirming that the moraine is of Loch Lomond (Younger Dryas) Stadial age, and suggesting that the moraine was deposited 200–500 years before the end of the stade. Copyright © 2013 John Wiley & Sons, Ltd.