Journal of Physics D Applied Physics · 2011 · 27 citations · 33 references
Magnetic PropertiesEngineeringMagnetic MaterialsAnomalous Hall EffectMagnetoresistanceMagnetismHall EffectMaterials ScienceAnisotropic MagnetoresistancePhysicsFe-based MicrowiresMagnetoelasticityMicroelectronicsMagnetic MaterialMicro-magnetic ModelingMicrostructureFocused-electron-beam-induced DepositionFerromagnetismNatural SciencesApplied PhysicsCondensed Matter PhysicsMagnetic Property
Abstract We report the temperature dependence of the resistivity, the anisotropic magnetoresistance and the Hall effect of iron microwires grown by focused-electron-beam-induced deposition. By modifying the growth conditions in a controllable way, we study wires with iron compositions varying from 45% to 70%, which present different electrical conduction mechanisms, with resistivity values differing over three orders of magnitude. The magnetoresistance depends highly on the composition, and it can be understood by a subtle interplay between the anisotropic magnetoresistance and intergrain magnetoresistance due to their complex microstructure, consisting of an iron–carbon–oxygen amorphous matrix. A giant value for the anomalous Hall effect is found, which we explain by a large contribution of the skew scattering mechanism. The present results emphasize the correlation between the exotic microstructure of the microwires, and their magnetotransport properties.
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Naoto Nagaosa, Jairo Sinova, Shigeki Onoda et al. · Reviews of Modern Physics · 2010 · 4.4K citations · Full text
Gas-assisted focused electron beam and ion beam processing and fabrication
Ivo Utke, P. Hoffmann, J. Melngailis · Journal of Vacuum Science & Technology B Microelectronics and Nanometer Structures Processing Measurement and Phenomena · 2008 · 1K citations · Full text
Engineering, Electron-beam Lithography, Precursor Gas Activation +16
The spontaneous hall effect in ferromagnetics II
The spontaneous hall effect in ferromagnetics I