Magnetotransport Properties and Kondo Effect Observed in a Ferromagnetic Single-Crystalline Fe1-xCoxSi Nanowire

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We report unconventional magnetotransport properties of an individual Fe1-xCoxSi nanowire. We have studied the dependence of the resistivity on the angle between the directions of the magnetization and electrical current below the Curie temperature (TC). The observed anisotropic magnetoresistance (MR) ratio is negative, thereby indicating that the conduction electrons in a minority spin band of the Fe1-xCoxSi nanowire dominantly contribute to the transport. Unlike typical ferromagnets, positive MR is observed in the overall temperature range. MR curves are linear below TC and show a quadratic form above TC, which can be explained by the change of density of states that arises as the band structures of the Fe1-xCoxSi nanowire shift under a magnetic field. The temperature dependence of the resistivity curve is sufficiently explained by the Kondo effect. The Kondo temperature of the Fe1-xCoxSi nanowire is lower than that of the bulk state due to suppression of the Kondo effect. The high single crystallinity of Fe1-xCoxSi nanowires allowed us to observe and interpret quite subtle variations in the prominent intrinsic transport properties.
Publisher
WILEY-BLACKWELL
Issue Date
2012-02
Language
English
Article Type
Article
Keywords

ANISOTROPIC MAGNETORESISTANCE; LINEAR MAGNETORESISTANCE; THERMODYNAMIC PROPERTIES; QUANTUM INTERFERENCE; ALLOYS; RESISTIVITY; INSULATOR; FILMS; FESI; SPIN

Citation

CHEMISTRY-AN ASIAN JOURNAL, v.7, no.2, pp.406 - 411

ISSN
1861-4728
DOI
10.1002/asia.201100679
URI
http://hdl.handle.net/10203/94352
Appears in Collection
CH-Journal Papers(저널논문)
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