材料科学
凝聚态物理
自旋电子学
旋转
电流密度
旋转泵
自旋(空气动力学)
扭矩
极化(电化学)
横截面
自旋极化
垂直的
散射
电阻率和电导率
自旋霍尔效应
电子
光电子学
工作(物理)
电导率
电流(流体)
巨磁阻
电流
电子散射
磁场
作者
Ziyan Song,Lujun Zhu,Lujun Zhu,Zhihao Yan,Qianbiao Liu,Lijun Zhu,Lijun Zhu
摘要
ABSTRACT Spin currents of both out‐of‐plane and transverse spins ( z and y spins) have great potential for energy‐efficient all‐electrical switching of perpendicular magnetization. Here, we demonstrate that alloying Pt with Cu considerably enhances the spin‐orbit torques of both z and y spins in magnetic devices with broken electric symmetry. The damping‐like spin‐orbit torque efficiency of the Pt 1‐ x Cu x /FeCoB alloys varies non‐monotonically with the Pt 1‐ x Cu x composition, with an enhancement of up to 5 times for both the z and y spins relative to that of the conventional Pt/FeCoB. The giant spin‐orbit torque enhancement is attributed to the increased electron scattering induced by alloying and a robust spin Hall conductivity of the Pt 1‐ x Cu x in the Pt‐rich regime. We also demonstrate that Pt 1‐ x Cu x enables 100% magnetic‐field‐free switching of a perpendicularly magnetized FeCoB layer at a current density of 1.8 × 10 7 A/cm 2 , which is the lowest among those for the complete field‐free switching of CMOS integration‐friendly spin‐orbit torque devices. This work has established Pt 1‐ x Cu x as a compelling, efficient multidirectional polarization spin current generator for spintronic memory and computing chip applications.
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