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Timing and pace of ice-sheet withdrawal across the marine-terrestrial transition west of Ireland during the last glaciation. / O'Cofaigh, Colm; Callard, Sarah Louise; Roberts, David et al.
In: Journal of Quaternary Science, Vol. 36, No. 5, 07.2021, p. 805-832.

Research output: Contribution to journalArticlepeer-review

HarvardHarvard

O'Cofaigh, C, Callard, SL, Roberts, D, Chiverrell, R, Evans, D, Saher, M, Van Landeghem, K, Smedley, R, Benetti, S, Burke, M, Clark, C, Duller, G, Livingstone, S, McCarron, S, Medialdea, A, Moreton, S & Sachetti, F 2021, 'Timing and pace of ice-sheet withdrawal across the marine-terrestrial transition west of Ireland during the last glaciation', Journal of Quaternary Science, vol. 36, no. 5, pp. 805-832. https://doi.org/10.1002/jqs.3295

APA

O'Cofaigh, C., Callard, S. L., Roberts, D., Chiverrell, R., Evans, D., Saher, M., Van Landeghem, K., Smedley, R., Benetti, S., Burke, M., Clark, C., Duller, G., Livingstone, S., McCarron, S., Medialdea, A., Moreton, S., & Sachetti, F. (2021). Timing and pace of ice-sheet withdrawal across the marine-terrestrial transition west of Ireland during the last glaciation. Journal of Quaternary Science, 36(5), 805-832. https://doi.org/10.1002/jqs.3295

CBE

O'Cofaigh C, Callard SL, Roberts D, Chiverrell R, Evans D, Saher M, Van Landeghem K, Smedley R, Benetti S, Burke M, et al. 2021. Timing and pace of ice-sheet withdrawal across the marine-terrestrial transition west of Ireland during the last glaciation. Journal of Quaternary Science. 36(5):805-832. https://doi.org/10.1002/jqs.3295

MLA

VancouverVancouver

O'Cofaigh C, Callard SL, Roberts D, Chiverrell R, Evans D, Saher M et al. Timing and pace of ice-sheet withdrawal across the marine-terrestrial transition west of Ireland during the last glaciation. Journal of Quaternary Science. 2021 Jul;36(5):805-832. Epub 2021 Apr 7. doi: https://doi.org/10.1002/jqs.3295

Author

O'Cofaigh, Colm ; Callard, Sarah Louise ; Roberts, David et al. / Timing and pace of ice-sheet withdrawal across the marine-terrestrial transition west of Ireland during the last glaciation. In: Journal of Quaternary Science. 2021 ; Vol. 36, No. 5. pp. 805-832.

RIS

TY - JOUR

T1 - Timing and pace of ice-sheet withdrawal across the marine-terrestrial transition west of Ireland during the last glaciation

AU - O'Cofaigh, Colm

AU - Callard, Sarah Louise

AU - Roberts, David

AU - Chiverrell, Richard

AU - Evans, David

AU - Saher, Margot

AU - Van Landeghem, Katrien

AU - Smedley, Rachel

AU - Benetti, Sara

AU - Burke, Matthew

AU - Clark, Chris

AU - Duller, Geoff

AU - Livingstone, Stephen

AU - McCarron, Stephen

AU - Medialdea, Alicia

AU - Moreton, Steven

AU - Sachetti, Fabio

PY - 2021/7

Y1 - 2021/7

N2 - Understanding the pace and drivers of marine-based ice-sheet retreat relies upon the integration of numerical ice-sheet models with observations from contemporary polar ice sheets and well-constrained palaeo-glaciological reconstructions. This paper is a reconstruction of the retreat of the last British-Irish Ice Sheet (BIIS) from the Atlantic shelf west of Ireland during and following, the Last Glacial Maximum (LGM). It uses marine-geophysical data and sediment cores dated by radiocarbon, combined with terrestrial cosmogenic nuclide and optically-stimulated luminescence dating of onshore ice-marginal landforms, to reconstruct the timing and rate of ice-sheet retreat from the continental shelf and across the adjoining coastline of Ireland, thus including the switch from a marine- to a terrestrially-based ice-sheet margin. Seafloor bathymetric data in the form of moraines and grounding-zone wedges on the continental shelf record an extensive ice sheet west of Ireland during the LGM which advanced to the outer shelf. This interpretation is supported by the presence of dated subglacial tills and overridden glacimarine sediments from across the Porcupine Bank, a westwards extension of the Irish continental shelf. The ice sheet was grounded on the outer shelf at ~26.8 ka cal BP with initial retreat underway by 25.9 ka cal BP. Retreat was not a continuous process but was punctuated by marginal oscillations until ~24.3 ka cal BP. The ice sheet thereafter retreated to the mid-shelf where it formed a large grounding-zone complex at ~23.7 ka cal BP. This retreat occurred in a glacimarine environment. The Aran Islands on the inner continental shelf were ice free by ~19.5 ka BP and the ice sheet had become largely terrestrially-based by 17.3 ka BP. This suggests that the Aran Islands acted to stabilise and slow overall ice-sheet retreat once the BIIS margin had reached the inner-shelf. Our results constrain the timing of initial retreat of the BIIS from the outer shelf west of Ireland to the period of minimum global eustatic sea level. Initial retreat was driven, at least in part, by glacio-isostatically-induced, high relative sea level. Net rates of ice-sheet retreat across the shelf were slow (62-19 m/yr) and reduced (8 m/yr) as the ice sheet vacated the inner shelf and moved onshore. A picture therefore emerges of an extensive BIIS on the Atlantic shelf west of Ireland, in which early, oscillatory retreat was followed by slow episodic retreat which decelerated further as the ice-margin became terrestrially-based. More broadly this demonstrates the importance of localised controls, in particular bed topography, on modulating the retreat of marine-based sectors of ice sheets.

AB - Understanding the pace and drivers of marine-based ice-sheet retreat relies upon the integration of numerical ice-sheet models with observations from contemporary polar ice sheets and well-constrained palaeo-glaciological reconstructions. This paper is a reconstruction of the retreat of the last British-Irish Ice Sheet (BIIS) from the Atlantic shelf west of Ireland during and following, the Last Glacial Maximum (LGM). It uses marine-geophysical data and sediment cores dated by radiocarbon, combined with terrestrial cosmogenic nuclide and optically-stimulated luminescence dating of onshore ice-marginal landforms, to reconstruct the timing and rate of ice-sheet retreat from the continental shelf and across the adjoining coastline of Ireland, thus including the switch from a marine- to a terrestrially-based ice-sheet margin. Seafloor bathymetric data in the form of moraines and grounding-zone wedges on the continental shelf record an extensive ice sheet west of Ireland during the LGM which advanced to the outer shelf. This interpretation is supported by the presence of dated subglacial tills and overridden glacimarine sediments from across the Porcupine Bank, a westwards extension of the Irish continental shelf. The ice sheet was grounded on the outer shelf at ~26.8 ka cal BP with initial retreat underway by 25.9 ka cal BP. Retreat was not a continuous process but was punctuated by marginal oscillations until ~24.3 ka cal BP. The ice sheet thereafter retreated to the mid-shelf where it formed a large grounding-zone complex at ~23.7 ka cal BP. This retreat occurred in a glacimarine environment. The Aran Islands on the inner continental shelf were ice free by ~19.5 ka BP and the ice sheet had become largely terrestrially-based by 17.3 ka BP. This suggests that the Aran Islands acted to stabilise and slow overall ice-sheet retreat once the BIIS margin had reached the inner-shelf. Our results constrain the timing of initial retreat of the BIIS from the outer shelf west of Ireland to the period of minimum global eustatic sea level. Initial retreat was driven, at least in part, by glacio-isostatically-induced, high relative sea level. Net rates of ice-sheet retreat across the shelf were slow (62-19 m/yr) and reduced (8 m/yr) as the ice sheet vacated the inner shelf and moved onshore. A picture therefore emerges of an extensive BIIS on the Atlantic shelf west of Ireland, in which early, oscillatory retreat was followed by slow episodic retreat which decelerated further as the ice-margin became terrestrially-based. More broadly this demonstrates the importance of localised controls, in particular bed topography, on modulating the retreat of marine-based sectors of ice sheets.

KW - British-Irish Ice Sheet

KW - Porcupine Bank

KW - western Ireland

KW - Last Glacial Maximum

KW - ice sheet extent

KW - subglacial till

KW - glacimarine sediments

KW - radiocarbon dating

KW - ice sheet retreat

U2 - https://doi.org/10.1002/jqs.3295

DO - https://doi.org/10.1002/jqs.3295

M3 - Article

VL - 36

SP - 805

EP - 832

JO - Journal of Quaternary Science

JF - Journal of Quaternary Science

SN - 1099-1417

IS - 5

ER -