Magnetic properties of the Bay of Islands ophiolite suite and implications for the magnetization of oceanic crust
- 10 May 1984
- journal article
- Published by American Geophysical Union (AGU) in Journal of Geophysical Research
- Vol. 89 (B5) , 3291-3308
- https://doi.org/10.1029/jb089ib05p03291
Abstract
Rock magnetic properties, opaque mineralogy, and degree of metamorphism were determined for 101 unoriented samples from the North Arm and Blow‐Me‐Down massifs of the Bay of Islands ophiolite complex, Newfoundland. The weathered and metamorphosed extrusive basalt samples have a weak, secondary magnetization arising from oxidation and exsolution of ilmenite of unknown origin. The initial magnetization of the underlying sheeted dike complex appears to have been destroyed by hydrothermal alteration soon after formation. The magnetic intensity of the gabbroic samples increases as the degree of alteration increases, with the highly altered upper metagabbros having an average intensity of 3×10−3 emu/c3. Because magnetization of the metagabbro samples is related to nonpervasive, variable alteration, these crustal units are unlikely to make a significant contribution to lineated magnetic anomalies. A compilation of our results and other studies suggests a model in which oceanic crust magnetization results from an upper extrusive basalt source layer, roughly 600 m thick, with no contribution from a deeper source layer recognizable from these Bay of Islands data.Keywords
This publication has 75 references indexed in Scilit:
- Ophiolites, seismic velocities and oceanic crustal structurePublished by Elsevier ,2003
- Anomalous behavior of the paleomagnetic field inferred from the skewness of anomalies 33 and 34Published by Elsevier ,2002
- Magma chamber profiles from the Bay of Islands ophiolite complexNature, 1981
- Characterization of viscous remanent magnetization in single‐ and multi‐domain magnetite grainsGeophysical Research Letters, 1981
- Variations in the degree of crustal extension during formation of a back-arc basinTectonophysics, 1981
- Hydrothermal convection at slow-spreading mid-ocean ridgesTectonophysics, 1979
- Vertical variations in the effects of hydrothermal metamorphism in Chilean ophiolites: Their implications for ocean floor metamorphismTectonophysics, 1979
- Magnetization of the oceanic crustReviews of Geophysics, 1979
- Morphology and tectonics of the inner rift valley at lat 36°50′N on the Mid-Atlantic RidgeGSA Bulletin, 1977
- A model for ocean-floor metamorphism, seismic layering and magnetismNature, 1976