The role of premagmatic rifting in shaping a volcanic continental margin: An example from the Eastern North American Margin
The role of premagmatic rifting in shaping a volcanic continental margin: An example from the Eastern North American Margin
Date
2020-10-12
Authors
Lang, Guy
ten Brink, Uri S.
Hutchinson, Deborah R.
Mountain, Gregory
Schattner, Uri
ten Brink, Uri S.
Hutchinson, Deborah R.
Mountain, Gregory
Schattner, Uri
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Person
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DOI
10.1029/2020JB019576
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Keywords
Eastern North American Margin
volcanic continental margin
lithosphere thinning
Central Atlantic
continental breakup
inherited rheology
volcanic continental margin
lithosphere thinning
Central Atlantic
continental breakup
inherited rheology
Abstract
Both magmatic and tectonic processes contribute to the formation of volcanic continental margins. Such margins are thought to undergo extension across a narrow zone of lithospheric thinning (~100 km). New observations based on existing and reprocessed data from the Eastern North American Margin contradict this hypothesis. With ~64,000 km of 2‐D seismic data tied to 40 wells combined with published refraction, deep reflection, receiver function, and onshore drilling efforts, we quantified along‐strike variations in the distribution of rift structures, magmatism, crustal thickness, and early post‐rift sedimentation under the shelf of Baltimore Canyon Trough (BCT), Long Island Platform, and Georges Bank Basin (GBB). Results indicate that BCT is narrow (80–120 km) with a sharp basement hinge and few rift basins. The seaward dipping reflectors (SDR) there extend ~50 km seaward of the hinge line. In contrast, the GBB is wide (~200 km), has many syn‐rift structures, and the SDR there extend ~200 km seaward of the hinge line. Early post‐rift depocenters at the GBB coincide with thinner crust suggesting “uniform” thinning of the entire lithosphere. Models for the formation of volcanic margins do not explain the wide structure of the GBB. We argue that crustal thinning of the BCT was closely associated with late syn‐rift magmatism, whereas the broad thinning of the GBB segment predated magmatism. Correlation of these variations to crustal terranes of different compositions suggests that the inherited rheology determined the premagmatic response of the lithosphere to extension.
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Author Posting. © American Geophysical Union, 2020. This article is posted here by permission of American Geophysical Union for personal use, not for redistribution. The definitive version was published in Journal of Geophysical Research: Solid Earth 125(11),(2020): e2020JB019576, doi:10.1029/2020JB019576.
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Lang, G., ten Brink, U. S., Hutchinson, D. R., Mountain, G. S., & Schattner, U. (2020). The role of premagmatic rifting in shaping a volcanic continental margin: An example from the Eastern North American Margin. Journal of Geophysical Research: Solid Earth, 125(11), e2020JB019576.