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  3. Subduction-zone contributions to axial volcanism in the Oman–U.A.E. ophiolite

Subduction-zone contributions to axial volcanism in the Oman–U.A.E. ophiolite

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DOI
10.7892/boris.130211
Publisher DOI
10.1130/L1045.1
Abstract
Over four decades of research on the Semail ophiolite (Oman–U.A.E.) has greatly in uenced our understanding of processes occurring at fast-spreading ocean ridges. While the well-developed sheeted dike complex and comagmatic lower pillow lavas indicate that the early Semail crust formed at a spreading axis, the precise tectonic setting of this axis—whether true mid-ocean ridge, back-arc or “proto”-arc— is contentious. This is largely because the tectonic implications of the geochemistry of the main axial volcanic unit (Geotimes/V1) are disputed. We bypass this hurdle by focusing on intercalations of primitive lavas that are depleted relative to mid-ocean-ridge basalt and that are deeply intercalated within the early Geotimes axial volcanostratigraphy throughout the northern ophiolite. Our analyses of these intercalations show a clear trace-element in uence from a subducting slab. We interpret the depleted axial melts to have formed by localized, high-degree partial melting assisted by a high-Th/Nb slab uid. These results con rm a deep subduction in uence on the entire axial spreading phase of the world’s largest ophiolite. Considered in the context of later hydrous and boninitic Alley volcanism and of insight from modern tectonic environments, our observations support a proto-arc, subduction-initiation setting for the origin of the Semail ophiolite.
Date Issued
2019
Publication Type
Article
Subject(s)
500 Science > 550 Earth sciences & geology
Language(s)
en
Author(s)
Belgrano, Thomas Mario  
Institut für Geologie  
Diamond, Larryn William  
Institut für Geologie  
Additional Credits
Institut für Geologie  
Journal
Lithosphere
Publisher
Geological Society of America
ISSN
1941-8264
Access(Rights)
open.access
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