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Computational study of microwave oscillations in nonstandard spin valves in the diffusive transport limit

2009/07/20 by E. Jaromirska, Pavel Baláž, P. Balaz +4
Physics and Astronomy · #Magnetic properties of thin films #Physics of Superconductivity and Magnetism #Theoretical and Computational Physics #cond-mat.mes-hall

paper · pdf · doi:10.1103/physrevb.81.014408

published as Phys. Rev. B 81, 014408 (2010) · 9 pages, 11 figures

arxiv created 2009/07/20 · openalex publication_date 2010/01/11 · arxiv updated 2010/04/12 · openalex created_date 2016/06/24 · openalex updated_date 2026/07/28

Abstract

An anomalous (inverse) spin accumulation in the nonmagnetic spacer may build up when the spin valve consists of magnetic films having different spin asymmetries and spin-diffusion lengths [J. Barna\ifmmode \acutes\else 's\fi, A. Fert, M. Gmitra, I. Weymann, and V. K. Dugaev, Phys. Rev. B 72, 024426 (2005)]. This leads to wavylike dependence of spin-transfer torque on the angle between magnetizations, as predicted by spin-dependent diffusive transport model, and also confirmed experimentally. Making use of these predictions, we have numerically studied the magnetization dynamics in the presence of such a wavy torque in Co(8 nm)/Cu(10 nm)/Py(8 nm) nanopillar, considering geometry with extended and etched Co layer. In both cases we specify conditions for the out-of-plane precession to appear in absence of external magnetic field and thermal fluctuations. We prove the assumption of wavylike torque angular dependence to be fully consistent with experimental observations. We also show that some features reported experimentally, such as nonlinear slope of frequency vs current, are beyond the applicability range of the macrospin approximation and can be explained only by full micromagnetic analysis.

Citations