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Anisotropy of magnetic susceptibility in natural olivine single crystals

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BORIS DOI
10.7892/boris.68090
Publisher DOI
10.1002/2014GC005386
Description
Mantle flow dynamics can cause preferential alignment of olivine crystals that results in anisotropy of physical properties. To interpret anisotropy in mantle rocks, it is necessary to understand the anisotropy of olivine single crystals. We determined anisotropy of magnetic susceptibility (AMS) for natural olivine crystals. High-field AMS allows for the isolation of the anisotropy due to olivine alone. The orientations of the principal susceptibility axes are related to the olivine’s crystallographic structure as soon as it contains >3 wt % FeO. The maximum susceptibility is parallel to the c axis both at room temperature (RT) and at 77 K. The orientation of the minimum axis at RT depends on iron content; it is generally parallel to the a axis in crystals with 3–5 wt % FeO, and along b in samples with 6–10 wt % FeO. The AMS ellipsoid is prolate and the standard deviatoric susceptibility, k0, is on the order of 8*10210 m3/kg for the samples with <1wt %
FeO, and ranges from 3.1*1029 m3/kg to 5.7*1029 m3/kg for samples with 3–10 wt % FeO. At 77 K, the minimum susceptibility is along b, independent of iron content. The shape of the AMS ellipsoid is prolate for samples with <5 wt % FeO, but can be prolate or oblate for higher iron content. The degree of anisotropy increases at 77 K with p0 7757.160.5. The results from this study will allow AMS fabrics to be used as a proxy for olivine texture in ultramafic rocks with high olivine content.
Date of Publication
2014
Publication Type
Article
Subject(s)
500 Science > 550 Earth sciences & geology
Language(s)
en
Contributor(s)
Biedermann, Andrea Reginaorcid-logo
Institut für Geologie
Pettke, Thomasorcid-logo
Institut für Geologie
Reusser, Eric
Hirt, Ann M.
Additional Credits
Institut für Geologie
Series
Geochemistry, geophysics, geosystems
Publisher
American Geophysical Union AGU
ISSN
1525-2027
Access(Rights)
open.access
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