Thickness dependence of unidirectional spin-Hall magnetoresistance in metallic bilayers

Publication date

2017-12-04

Authors

Yin, Yuxiang
Han, Dong-Soo
Jong, Mark C. H. de
Lavrijsen, Reinoud
Duine, Rembert A.ISNI 0000000387951716
Swagten, Henk J. M.
Koopmans, Bert

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Supervisors

Document Type

Article

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Abstract

A nonlinear magnetoresistance - called unidirectional spin-Hall magnetoresistance - is recently experimentally discovered in metallic bilayers consisting of a heavy metal and a ferromagnetic metal. To study the fundamental mechanism of the USMR, both ferromagnetic and heavy metallic layer thickness dependence of the USMR are presented in a Pt/Co/AlOx trilayer at room temperature. To avoid ambiguities, second harmonic Hall measurements are used for separating spin-Hall and thermal contributions to the non-linear magnetoresistance. The experimental results are fitted by using a drift-diffusion theory, with parameters extracted from an analysis of longitudinal resistivity of the Co layer within the framework of the Fuchs-Sondheimer model. A good agreement with the theory is found, demonstrating that the USMR is governed by both the spin-Hall effect in the heavy metallic layer and the metallic diffusion process in the ferromagnetic layer.

Keywords

Magnetic ordering, Quantum Hall effects, Surface scattering, Ferromagnetic materials, Nanomagnets

Citation

Yin, Y, Han, D-S, Jong, M C H D, Lavrijsen, R, Duine, R A, Swagten, H J M & Koopmans, B 2017, 'Thickness dependence of unidirectional spin-Hall magnetoresistance in metallic bilayers', Applied Physics Letters, vol. 111, no. 23, 232405, pp. 1-4. https://doi.org/10.1063/1.5003725