Anomalous spin-orbit torque switching due to field-like torque-assisted domain wall reflection.

Yoon, Jungbum; Lee, Seo-Won; Kwon, Jae Hyun; Lee, Jong Min; Son, Jaesung; Qiu, Xuepeng; Lee, Kyung-Jin; Yang, Hyunsoo · Sci Adv · 2017

basic_science · Level V

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Abstract

Spin-orbit torques (SOTs) allow the electrical control of magnetic states. Current-induced SOT switching of the perpendicular magnetization is of particular technological importance. The SOT consists of damping-like and field-like torques, and understanding the combined effects of these two torque components is required for efficient SOT switching. Previous quasi-static measurements have reported an increased switching probability with the width of current pulses, as predicted considering the damping-like torque alone. We report a decreased switching probability at longer pulse widths, based on time-resolved measurements. Micromagnetic analysis reveals that this anomalous SOT switching results from domain wall reflections at sample edges. The domain wall reflection was found to strongly depend on the field-like torque and its relative sign to the damping-like torque. Our result demonstrates a key role of the field-like torque in deterministic SOT switching and the importance of the sign correlation of the two torque components, which may shed light on the SOT switching mechanism.