First‐order reversal curve diagrams: A new tool for characterizing the magnetic properties of natural samples
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Open Access
- 10 December 2000
- journal article
- Published by American Geophysical Union (AGU) in Journal of Geophysical Research
- Vol. 105 (B12) , 28461-28475
- https://doi.org/10.1029/2000jb900326
Abstract
Paleomagnetic and environmental magnetic studies are commonly conducted on samples containing mixtures of magnetic minerals and/or grain sizes. Major hysteresis loops are routinely used to provide information about variations in magnetic mineralogy and grain size. Standard hysteresis parameters, however, provide a measure of the bulk magnetic properties, rather than enabling discrimination between the magnetic components that contribute to the magnetization of a sample. By contrast, first‐order reversal curve (FORC) diagrams, which we describe here, can be used to identify and discriminate between the different components in a mixed magnetic mineral assemblage. We use magnetization data from a class of partial hysteresis curves known as first‐order reversal curves (FORCs) and transform the data into contour plots (FORC diagrams) of a two‐dimensional distribution function. The FORC distribution provides information about particle switching fields and local interaction fields for the assemblage of magnetic particles within a sample. Superparamagnetic, single‐domain, and multidomain grains, as well as magnetostatic interactions, all produce characteristic and distinct manifestations on a FORC diagram. Our results indicate that FORC diagrams can be used to characterize a wide range of natural samples and that they provide more detailed information about the magnetic particles in a sample than standard interpretational schemes which employ hysteresis data. It will be necessary to further develop the technique to enable a more quantitative interpretation of magnetic assemblages; however, even qualitative interpretation of FORC diagrams removes many of the ambiguities that are inherent to hysteresis data.Keywords
This publication has 50 references indexed in Scilit:
- Stochastic dynamics in quenched-in disorder and hysteresisJournal of Applied Physics, 1999
- Comparison of magnetic hysteresis parameters of unremagnetized and remagnetized limestonesJournal of Geophysical Research, 1994
- Magnetic Properties of Natural Goethite-I. Grain-Size Dependence of Some Low- and High-Field Related Rockmagnetic Parameters Measured At Room TemperatureGeophysical Journal International, 1989
- The rock magnetism of fine particlesPhysics of the Earth and Planetary Interiors, 1981
- Interacting vs. non-interacting single domain behavior in natural and synthetic samplesPhysics of the Earth and Planetary Interiors, 1981
- Relationship between median destructive field and remanent coercive forces for dispersed natural magnetite, titanomagnetite and hematiteGeophysical Journal International, 1981
- Influence of densification on the remanence, the coercivities and the interaction field of elongated γFe2O3powdersIEEE Transactions on Magnetics, 1978
- Hysteresis properties of titanomagnetites: Grain-size and compositional dependencePhysics of the Earth and Planetary Interiors, 1977
- Preisach diagrams and remanent properties of interacting monodomain grainsPhilosophical Magazine, 1969
- Statistical Stability of the Preisach Diagram for Particles of γ-Fe2O3Journal of Applied Physics, 1962