Cenozoic strike-slip faulting from the eastern margin of the Wilkes Subglacial Basin to the western margin of the Ross Sea Rift: an aeromagnetic connection

Author:

Ferraccioli Fausto12,Bozzo Emanuele1

Affiliation:

1. Dipartimento per lo Studio del Territorio e delle sue Risorse, Univ. Genova Viale Benedetto XV, 5 16132 Genova, Italy magne@dipteris.unige.it

2. British Antartic Survey High Cross, Madingley Road, Cambridge CB3 OET, UK

Abstract

AbstractTectonic modelling of regional aeromagnetic anomaly patterns suggests Cenozoic right-lateral strike-slip faulting along an inherited fault system of the Transantarctic Mountains and adjacent hinterland. We name it here the Prince Albert Fault System. The Reeves Fault and David Fault are Cenozoic right-lateral strike-slip faults and form part of the NW-SE-striking segment of this complex fault system, extending to the eastern margin of the Wilkes Subglacial Basin. Our aeromagnetic interpretation suggests therefore that the Wilkes Subglacial Basin may be connected to the Cenozoic strike-slip kinematic framework of the Transantarctic Mountains and western Ross Sea Rift. The southernmost segment of the Prince Albert Fault System parallels the N-S-striking McMurdo Sound Fault Zone and, together with it, defines a transtensional western Ross Sea Rift margin. High-resolution aeromagnetic images define the Cape Roberts pull-apart basin and suggest that Cenozoic magmatism may have focused along the transtensional western Ross Sea Rift margin itself.

Publisher

Geological Society of London

Subject

Geology,Ocean Engineering,Water Science and Technology

Reference96 articles.

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3. Geology of the margin of the Victoria Land Basin off Cape Roberts, southwest Ross Sea;Barrett,1995

4. Crustal and lithospheric structure of the West Antarctic Rift System from geophysical investigations — a review

5. Interpretation of marine magnetic gradiometer and multichannel seismic-reflection observations over the Western Ross Sea Shelf, Antarctica;Behrendt,1987

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