Micromagnetic Tomography for Paleomagnetism and Rock-Magnetism

Publication date

2021-10

Authors

de Groot, Lennart V.
Fabian, Karl
Béguin, A.ISNI 000000049330095X
Kosters, M.E.ISNI 0000000506789660
Cortés-Ortuño, DavidORCID 0000-0003-3799-3141ISNI 0000000506356371
Fu, Roger R.
Jansen, Chloë M.L.
Harrison, Richard J.
van Leeuwen, T.ISNI 0000000395587264
Barnhoorn, A.ISNI 0000000419561211

Editors

Advisors

Supervisors

Document Type

Article
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Abstract

Our understanding of the past behavior of the geomagnetic field arises from magnetic signals stored in geological materials, e.g., (volcanic) rocks. Bulk rock samples, however, often contain magnetic grains that differ in chemistry, size, and shape; some of them record the Earth's magnetic field well, others are unreliable. The presence of a small amount of adverse behaved magnetic grains in a sample may already obscure important information on the past state of the geomagnetic field. Recently it was shown that it is possible to determine magnetizations of individual grains in a sample by combining X-ray computed tomography and magnetic surface scanning measurements. Here we establish this new Micromagnetic Tomography (MMT) technique and make it suitable for use with different magnetic scanning techniques, and for both synthetic and natural samples. We acquired reliable magnetic directions by selecting subsets of grains in a synthetic sample, and we obtained rock-magnetic information of individual grains in a volcanic sample. This illustrates that MMT opens up entirely new venues of paleomagnetic and rock-magnetic research. MMT's unique ability to determine the magnetization of individual grains in a nondestructive way allows for a systematic analysis of how geological materials record and retain information on the past state of the Earth's magnetic field. Moreover, by interpreting only the contributions of known magnetically well-behaved grains in a sample, MMT has the potential to unlock paleomagnetic information from even the most complex, crucial, or valuable recorders that current methods are unable to recover.

Keywords

microCT, micromagnetic tomography, rock-magnetism, scanning magnetometry, Geophysics, Geochemistry and Petrology, Earth and Planetary Sciences (miscellaneous), Space and Planetary Science

Citation

de Groot, L V, Fabian, K, Béguin, A, Kosters, M E, Cortés-Ortuño, D, Fu, R R, Jansen, C M L, Harrison, R J, van Leeuwen, T & Barnhoorn, A 2021, 'Micromagnetic Tomography for Paleomagnetism and Rock-Magnetism', Journal of Geophysical Research: Solid Earth, vol. 126, no. 10, e2021JB022364, pp. 1-21. https://doi.org/10.1029/2021JB022364