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An Improved Algorithm for Unmixing First‐Order Reversal Curve Diagrams Using Principal Component Analysis
Author(s) -
Harrison Richard J.,
Muraszko Joy,
Heslop David,
Lascu Ioan,
Muxworthy Adrian R.,
Roberts Andrew P.
Publication year - 2018
Publication title -
geochemistry, geophysics, geosystems
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.928
H-Index - 136
ISSN - 1525-2027
DOI - 10.1029/2018gc007511
Subject(s) - principal component analysis , diagram , mixing (physics) , domain (mathematical analysis) , algorithm , binary number , computer science , geology , physics , mathematics , statistics , mathematical analysis , artificial intelligence , arithmetic , quantum mechanics
First‐order reversal curve (FORC) diagrams of synthetic binary mixtures with single‐domain, vortex state, and multidomain end‐members (EMs) were analyzed using principal component analysis (FORC‐PCA). Mixing proportions derived from FORC‐PCA are shown to deviate systematically from the known weight percent of EMs, which is caused by the lack of reversible magnetization contributions to the FORC distribution. The error in the mixing proportions can be corrected by applying PCA to the raw FORCs, rather than to the processed FORC diagram, thereby capturing both reversible and irreversible contributions to the signal. Here we develop a new practical implementation of the FORC‐PCA method that enables quantitative unmixing to be performed routinely on suites of FORC diagrams with up to four distinct EMs. The method provides access not only to the processed FORC diagram of each EM, but also to reconstructed FORCs, which enables objective criteria to be defined that aid identification of physically realistic EMs. We illustrate FORC‐PCA with examples of quantitative unmixing of magnetic components that will have widespread applicability in paleomagnetism and environmental magnetism.

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