This paper provides a new deglacial chronology for retreat of the Irish Ice Sheet from the continental shelf of western Ireland to the adjoining coastline, a region where the timing and drivers of ice recession have never been fully constrained. Previous work suggests maximum ice‐sheet extent on the outer western continental shelf occurred at ~26–24 cal. ka BP with the initial retreat of the ice marked by the production of grounding‐zone wedges between 23–21.1 cal. ka BP . However, the timing and rate of ice‐sheet retreat from the inner continental shelf to the present coast are largely unknown. This paper reports 31 new terrestrial cosmogenic nuclide (TCN ) ages from erratics and ice‐moulded bedrock and three new optically stimulated lumin...
The last British-Irish Ice Sheet (BIIS) had extensive marine-terminating margins and was drained by ...
This research was funded by the UK Natural Environment Research Council grant NE/J007196/1 ‘Britice‐...
This research was funded by the UK Natural Environment Research Council consortium grant NE/J007196/...
This paper provides a new deglacial chronology for retreat of the Irish Ice Sheet from the continent...
This paper provides a new deglacial chronology for retreat of the Irish Ice Sheet from the continent...
This paper provides a new deglacial chronology for retreat of the Irish Ice Sheet from the continent...
This paper provides a new deglacial chronology for retreat of the Irish Ice Sheet from the continent...
This paper provides a new deglacial chronology for retreat of the Irish Ice Sheet from the continent...
During the Last Glacial Maximum, the British-Irish Ice Sheet extended across the continental shelf o...
During the Last Glacial Maximum, the British-Irish Ice Sheet extended across the continental shelf o...
New optically stimulated luminescence dating and Bayesian models integrating all legacy and BRITICE-...
Understanding the pace and drivers of marine-based ice-sheet retreat relies upon the integration of ...
New optically stimulated luminescence dating and Bayesian models integrating all legacy and BRITICE-...
New optically stimulated luminescence dating and Bayesian models integrating all legacy and BRITICE-...
Understanding the pace and drivers of marine-based ice-sheet retreat relies upon the integration of ...
The last British-Irish Ice Sheet (BIIS) had extensive marine-terminating margins and was drained by ...
This research was funded by the UK Natural Environment Research Council grant NE/J007196/1 ‘Britice‐...
This research was funded by the UK Natural Environment Research Council consortium grant NE/J007196/...
This paper provides a new deglacial chronology for retreat of the Irish Ice Sheet from the continent...
This paper provides a new deglacial chronology for retreat of the Irish Ice Sheet from the continent...
This paper provides a new deglacial chronology for retreat of the Irish Ice Sheet from the continent...
This paper provides a new deglacial chronology for retreat of the Irish Ice Sheet from the continent...
This paper provides a new deglacial chronology for retreat of the Irish Ice Sheet from the continent...
During the Last Glacial Maximum, the British-Irish Ice Sheet extended across the continental shelf o...
During the Last Glacial Maximum, the British-Irish Ice Sheet extended across the continental shelf o...
New optically stimulated luminescence dating and Bayesian models integrating all legacy and BRITICE-...
Understanding the pace and drivers of marine-based ice-sheet retreat relies upon the integration of ...
New optically stimulated luminescence dating and Bayesian models integrating all legacy and BRITICE-...
New optically stimulated luminescence dating and Bayesian models integrating all legacy and BRITICE-...
Understanding the pace and drivers of marine-based ice-sheet retreat relies upon the integration of ...
The last British-Irish Ice Sheet (BIIS) had extensive marine-terminating margins and was drained by ...
This research was funded by the UK Natural Environment Research Council grant NE/J007196/1 ‘Britice‐...
This research was funded by the UK Natural Environment Research Council consortium grant NE/J007196/...