The onshore exposures adjacent to modern, offshore passive continental margins may preserve evidence of deformation from the pre‐, syn‐, and post‐rift phases of continental breakup that allow us to investigate the processes associated with and controlling rifting and breakup. Here, we characterize onshore brittle deformation and pre‐rift basement metamorphic mineral fabric from onshore Labrador in Eastern Canada in the Palaeoproterozoic Aillik Domain of the Makkovik Province. Stress inversion (1) was applied to these data and then compared to (2) numerical models of hybrid slip and dilation tendency, (3) independent calculations of the regional geopotential stress field, and (4) analyses of palaeo‐stress in proximal regions from previous wo...
Reconstructing the opening of the Labrador Sea and Baffin Bay between Greenland and North America re...
Mesozoic‐Cenozoic rifting between Greenland and North America created the Labrador Sea and Baffin Ba...
Extensional systems evolve through different stages due to changes in the rheological state of the l...
The onshore exposures adjacent to modern, offshore passive continental margins may preserve evidence...
The onshore exposures adjacent to modern, offshore passive continental margins may preserve evidence...
The onshore exposures adjacent to modern, offshore passive continental margins may preserve evidence...
The onshore exposures adjacent to modern, offshore passive continental margins may preserve evidence...
Continental extension causes rifting and thinning of the lithosphere that may result in breakup and ...
The Labrador Sea is a small (∼900 km wide) ocean basin separating southwest Greenland from Labrador,...
Continental breakup between Greenland and North America produced the small oceanic basins of the Lab...
The Labrador Sea is a small (∼900 km wide) ocean basin separating southwest Greenland from Labrador,...
Breakup between Greenland and Canada resulted in oceanic spreading in the Labrador Sea and Baffin Ba...
Because of its geographic extent of over 2500 km (1553 mi), the West Greenland margin provides a muc...
International audienceWe characterize and map the stress fields acting during plate breakup along th...
The Labrador Sea is part of the Atlantic rift system which opens during Early Cretaceous times in th...
Reconstructing the opening of the Labrador Sea and Baffin Bay between Greenland and North America re...
Mesozoic‐Cenozoic rifting between Greenland and North America created the Labrador Sea and Baffin Ba...
Extensional systems evolve through different stages due to changes in the rheological state of the l...
The onshore exposures adjacent to modern, offshore passive continental margins may preserve evidence...
The onshore exposures adjacent to modern, offshore passive continental margins may preserve evidence...
The onshore exposures adjacent to modern, offshore passive continental margins may preserve evidence...
The onshore exposures adjacent to modern, offshore passive continental margins may preserve evidence...
Continental extension causes rifting and thinning of the lithosphere that may result in breakup and ...
The Labrador Sea is a small (∼900 km wide) ocean basin separating southwest Greenland from Labrador,...
Continental breakup between Greenland and North America produced the small oceanic basins of the Lab...
The Labrador Sea is a small (∼900 km wide) ocean basin separating southwest Greenland from Labrador,...
Breakup between Greenland and Canada resulted in oceanic spreading in the Labrador Sea and Baffin Ba...
Because of its geographic extent of over 2500 km (1553 mi), the West Greenland margin provides a muc...
International audienceWe characterize and map the stress fields acting during plate breakup along th...
The Labrador Sea is part of the Atlantic rift system which opens during Early Cretaceous times in th...
Reconstructing the opening of the Labrador Sea and Baffin Bay between Greenland and North America re...
Mesozoic‐Cenozoic rifting between Greenland and North America created the Labrador Sea and Baffin Ba...
Extensional systems evolve through different stages due to changes in the rheological state of the l...