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Vibrating sample magnetometer 2D and 3D magnetization effects associated with different initial magnetization states
Author(s) -
Ronald E. Lukins
Publication year - 2017
Publication title -
aip advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.421
H-Index - 58
ISSN - 2158-3226
DOI - 10.1063/1.4973750
Subject(s) - magnetization , remanence , magnetometer , condensed matter physics , stoner–wohlfarth model , coercivity , magnetic anisotropy , materials science , hysteresis , rotation (mathematics) , magnetic hysteresis , demagnetizing field , magnetic field , nuclear magnetic resonance , physics , mathematics , geometry , quantum mechanics
Differences in VSM magnetization vector rotation associated with various initial magnetization states were demonstrated. Procedures and criteria were developed to select sample orientation and initial magnetization states to allow for the combination of two different 2D measurements runs (with the same field profiles) to generate a dataset that can be representative of actual 3D magnetization rotation. Nickel, cast iron, and low moment magnetic tape media were used to demonstrate these effects using hysteresis and remanent magnetization test sequences. These results can be used to generate 2D and 3D magnetic properties to better characterize magnetic phenomena which are inherently three dimensional. Example applications are magnetic tape-head orientation sensitivity, reinterpretation of 3D coercivity and other standard magnetic properties, and multi-dimensional shielding effectiveness

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