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Local electrical characterization of resonant magnetization motion in a single ferromagnetic sub-micrometer particle in lateral geometry

2010/12/06 by A. Slobodskyy, Slobodskyy, A., B. J. van Wees +1
Materials Science · Physics and Astronomy · #Magnetic Properties and Applications #Magnetic properties of thin films #Quantum and electron transport phenomena #cond-mat.mes-hall #cond-mat.mtrl-sci

paper · pdf · doi:10.48550/arxiv.1012.1266

arxiv created 2010/12/06 · arxiv updated 2010/12/07

Abstract

In this article a detailed characterization of a magnetization motion in a single sub-micrometer and multi-terminal ferromagnetic structure in lateral geometry is performed in a GHz regime using direct DC characterization technique. We have shown applicability of the Stoner-Wohlfarth model to the magnetic nano-structure with large length to with ratio. Applying the model to experimental data we are able to extract relevant magnetization motion parameters and show a correlation between high frequency inductive currents and local magnetization. Additionally, DC voltage generated over the structure at the resonance, with external magnetic field under an angle to the shape anisotropy axis, is explained by the model.

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