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首页> 外文期刊>Journal of Applied Physics >Efficient current-induced magnetization reversal by spin-orbit torque in Pt/Co/Pt
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Efficient current-induced magnetization reversal by spin-orbit torque in Pt/Co/Pt

机译:通过Pt / Co / Pt中的自旋轨道转矩有效地逆转电流感应的磁化强度

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Current-induced magnetization reversal due to spin-orbit torque is demonstrated in an anisotropy controlled Pt/Co/Pt trilayer. The samples were designed to have weak perpendicular magnetic anisotropy, with a measured anisotropy field of (1340 +/- 20) Oe. Reversal is shown to be dominated by a damping-like torque associated with the spin-Hall effect. A small in-plane magnetic field was required to break the symmetry and enable reversal. With a 273 Oe field, magnetization reversal occurred with a current density amplitude of only 5 x 10(10) Am-2, which is shown to be consistent with a simple model. The field-like torque is negligible, so measurements indicate that the imaginary part of the spin-mixing conductance associated with Co/Pt interfaces must be negligible. Published by AIP Publishing.
机译:在各向异性控制的Pt / Co / Pt三层中证明了由于自旋轨道转矩引起的电流感应磁化反转。样品被设计为具有弱的垂直磁各向异性,测量的各向异性场为(1340 +/- 20)Oe。反转被显示为与自旋霍尔效应相关的类似阻尼的转矩。需要一个小的面内磁场来破坏对称性并实现反转。在273 Oe磁场下,磁化反转发生,电流密度幅度仅为5 x 10(10)Am-2,这表明与简单模型一致。像电场一样的转矩可以忽略不计,因此测量表明与Co / Pt界面相关的自旋混合电导的虚部必须可以忽略不计。由AIP Publishing发布。

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