Content area

Abstract

Spin-orbit torque, a torque brought about by in-plane current via the spin-orbit interactions in heavy-metal/ferromagnet nanostructures, provides a new pathway to switch the magnetization direction. Although there are many recent studies, they all build on one of two structures that have the easy axis of a nanomagnet lying orthogonal to the current, that is, along the z or y axes. Here, we present a new structure with the third geometry, that is, with the easy axis collinear with the current (along the x axis). We fabricate a three-terminal device with a Ta/CoFeB/MgO-based stack and demonstrate the switching operation driven by the spin-orbit torque due to Ta with a negative spin Hall angle. Comparisons with different geometries highlight the previously unknown mechanisms of spin-orbit torque switching. Our work offers a new avenue for exploring the physics of spin-orbit torque switching and its application to spintronics devices.

Details

Title
A spin-orbit torque switching scheme with collinear magnetic easy axis and current configuration
Author
Fukami, S; Anekawa, T; Zhang, C; Ohno, H
Pages
621-625
Publication year
2016
Publication date
Jul 2016
Publisher
Nature Publishing Group
ISSN
17483387
e-ISSN
17483395
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
1802023280
Copyright
Copyright Nature Publishing Group Jul 2016