4.7 Article

The continent-to-ocean transition in the Iberia Abyssal Plain

Journal

GEOLOGY
Volume 50, Issue 5, Pages 615-619

Publisher

GEOLOGICAL SOC AMER, INC
DOI: 10.1130/G49753.1

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Funding

  1. Spanish Ministry of Science

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Studies based on the continent-to-ocean transition in the Iberia Abyssal Plain suggest that exhumed mantle abuts extended continental crust, with the J anomaly occurring over subdued basement, indicating the onset of magma-starved seafloor spreading. The region is asymmetric with respect to its conjugate margin, implying that the majority of mantle exhumation occurs off Iberia.
Conceptual models of magma-poor rifting are strongly based on studies of the nature of the basement in the continent-to-ocean transition of the Iberia Abyssal Plain, and suggest that exhumed mantle abuts extended continental crust. Yet, basement has only been sampled at a few sites, and its regional nature and the transition to seafloor spreading inferred from relatively low-resolution geophysical data are inadequately constrained. This uncertainty has led to a debate about the subcontinental or seafloor-spreading origin of exhumed mantle and the rift-related or oceanic nature of magmatic crust causing the magnetic J anomaly. Different interpretations change the locus of break-up by >100 km and lead to debate of the causative processes. We present the tomographic velocity structure along a 360-km-long seismic profile centered at the J anomaly in the Iberia Abyssal Plain. Rather than delineating an excessive outpouring of magma, the J anomaly occurs over subdued basement. Furthermore, its thin crust shows the characteristic layering of oceanic crust and is juxtaposed to exhumed mantle, marking the onset of magma-starved seafloor spreading, which yields the westward limit of an similar to 160-km-wide continent-ocean transition zone where continental mantle has been unroofed. This zone is profoundly asymmetric with respect to its conjugate margin, suggesting that the majority of mantle exhumation occurs off Iberia. Because the J anomaly is related to the final break-up and emplacement of oceanic crust, it neither represents synrift magmatism nor defines an isochron, and hence it poorly constrains plate tectonic reconstructions.

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