Experimental modeling of the chemical remanent magnetization and Thellier procedure on titanomagnetite-bearing basalts
- Authors: Gribov S.K.1, Dolotov A.V.1, Shcherbakov V.P.1,2
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Affiliations:
- Borok Geophysical Observatory, Schmidt Institute of Physics of the Earth
- Institute of Geology and Petroleum Technologies
- Issue: Vol 53, No 2 (2017)
- Pages: 274-292
- Section: Article
- URL: https://journals.rcsi.science/1069-3513/article/view/224047
- DOI: https://doi.org/10.1134/S1069351317010062
- ID: 224047
Cite item
Abstract
The results of the experimental studies on creating chemical and partial thermal remanent magnetizations (or their combination), which are imparted at the initial stage of the laboratory process of the oxidation of primary magmatic titanomagnetites (Tmts) contained in the rock, are presented. For creating chemical remanent magnetization, the samples of recently erupted Kamchatka basalts were subjected to 200-h annealing in air in the temperature interval from 400 to 500°С under the action of the magnetic field on the order of the Earth’s magnetic field. After creation of this magnetization, the laboratory modeling of the Thellier–Coe and Wilson–Burakov paleointensity determination procedures was conducted on these samples. It is shown that when the primary magnetization is chemical, created at the initial stage of oxidation, and the paleointensity determined by these techniques is underestimated by 15–20% relative to its true values.
About the authors
S. K. Gribov
Borok Geophysical Observatory, Schmidt Institute of Physics of the Earth
Author for correspondence.
Email: gribov@borok.yar.ru
Russian Federation, Borok, 152742
A. V. Dolotov
Borok Geophysical Observatory, Schmidt Institute of Physics of the Earth
Email: gribov@borok.yar.ru
Russian Federation, Borok, 152742
V. P. Shcherbakov
Borok Geophysical Observatory, Schmidt Institute of Physics of the Earth; Institute of Geology and Petroleum Technologies
Email: gribov@borok.yar.ru
Russian Federation, Borok, 152742; Kazan, 420111
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