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利用横向自旋轨道转矩实现确定性磁化翻转

Deterministic Magnetization Switching Using Lateral Spin-Orbit Torque.

作者信息

Cao Yi, Sheng Yu, Edmonds Kevin William, Ji Yang, Zheng Houzhi, Wang Kaiyou

机构信息

State Key Laboratory for Superlattices and Microstructures, Institute of Semiconductors, Chinese Academy of Sciences, Beijing, 100083, China.

Beijing Academy of Quantum Information Sciences, Beijing, 100193, China.

出版信息

Adv Mater. 2020 Apr;32(16):e1907929. doi: 10.1002/adma.201907929. Epub 2020 Feb 28.

Abstract

Current-induced magnetization switching by spin-orbit torque (SOT) holds considerable promise for next generation ultralow-power memory and logic applications. In most cases, generation of spin-orbit torques has relied on an external injection of out-of-plane spin currents into the magnetic layer, while an external magnetic field along the electric current direction is generally required for realizing deterministic switching by SOT. Here, deterministic current-induced SOT full magnetization switching by lateral spin-orbit torque in zero external magnetic field is reported. The Pt/Co/Pt magnetic structure is locally annealed by a laser track along the in-plane current direction, resulting in a lateral Pt gradient within the ferromagnetic layer, as confirmed by microstructure and chemical composition analysis. In zero magnetic field, the direction of the deterministic current-induced magnetization switching depends on the location of the laser track, but shows no dependence on the net polarization of external out-of-plane spin currents. From the behavior under external magnetic fields, two independent mechanisms giving rise to SOT are identified, i.e., the lateral Pt-Co asymmetry as well as out-of-plane injected spin currents, where the polarization and the magnitude of the SOT in the former case depends on the relative location and the laser power of the annealing track.

摘要

通过自旋轨道扭矩(SOT)实现的电流诱导磁化翻转,对于下一代超低功耗存储器和逻辑应用具有巨大的潜力。在大多数情况下,自旋轨道扭矩的产生依赖于向磁性层外部注入面外自旋电流,而通常需要沿电流方向施加外部磁场才能通过SOT实现确定性翻转。在此,报道了在零外部磁场中通过横向自旋轨道扭矩实现的确定性电流诱导SOT全磁化翻转。通过沿面内电流方向的激光轨迹对Pt/Co/Pt磁性结构进行局部退火,如微观结构和化学成分分析所证实的,在铁磁层内产生了横向Pt梯度。在零磁场中,确定性电流诱导的磁化翻转方向取决于激光轨迹的位置,但不依赖于外部面外自旋电流的净极化。从外部磁场下的行为中,确定了产生SOT的两种独立机制,即横向Pt-Co不对称以及面外注入的自旋电流,其中前一种情况下SOT的极化和大小取决于退火轨迹的相对位置和激光功率。

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