Magnetic Mineral Populations in Lower Oceanic Crustal Gabbros (Atlantis Bank, SW Indian Ridge): Implications for Marine Magnetic Anomalies

dc.creatorBowles, Julie A.
dc.creatorMorris, A.
dc.creatorTivey, M. A.
dc.creatorLascu, Ioan
dc.date.accessioned2024-12-06T19:25:05Z
dc.date.available2024-12-06T19:25:05Z
dc.date.issued2020-02-28
dc.description.abstractTo learn more about magnetic properties of the lower ocean crust and its contributions to marine magnetic anomalies, gabbro samples were collected from International Ocean Discovery Program Hole U1473A at Atlantis Bank on the Southwest Indian Ridge. Detailed magnetic property work links certain magnetic behaviors and domain states to specific magnetic mineral populations. Measurements on whole rocks and mineral separates included magnetic hysteresis, first‐order reversal curves, low‐temperature remanence measurements, thermomagnetic analysis, and magnetic force microscopy. Characteristics of the thermomagnetic data indicate that the upper ~500 m of the hole has undergone hydrothermal alteration. The thermomagnetic and natural remanent magnetization data are consistent with earlier observations from Hole 735B that show remanence arises from low‐Ti magnetite and that natural remanent magnetizations are up to 25 A m−1 in evolved Fe‐Ti oxide gabbros, but are mostly
dc.identifier.citationBowles, J. A., Morris, A., Tivey,M. A., & Lascu, I. (2020). Magnetic mineral populations in lower oceanic crustal gabbros (Atlantis Bank, SW Indian Ridge): Implications for marine magnetic anomalies. Geochemistry, Geophysics, Geosystems, 21, e2019GC008847. https://doi.org/10.1029/2019GC008847
dc.identifier.urihttp://digital.library.wisc.edu/1793/84999
dc.relation.replaceshttps://dc.uwm.edu/geosci_facart/22
dc.subjectmarine magnetic anomalies
dc.subjectocean crust magnetization
dc.subjectmagnetic minerology
dc.subjectIODP
dc.subjectExpedition 360
dc.subjectJOIDES Resolution
dc.titleMagnetic Mineral Populations in Lower Oceanic Crustal Gabbros (Atlantis Bank, SW Indian Ridge): Implications for Marine Magnetic Anomalies
dc.typearticle

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