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三重对称双层中的自旋轨道转矩及其对磁化动力学的影响。

Spin-orbit torque in a three-fold-symmetric bilayer and its effect on magnetization dynamics.

作者信息

Fang Wuzhang, Schwartz Edward, Kovalev Alexey A, Belashchenko K D

机构信息

Department of Physics and Astronomy and Nebraska Center for Materials and Nanoscience, University of Nebraska-Lincoln, Lincoln, NE 68588, United States of America.

出版信息

J Phys Condens Matter. 2025 Feb 27;37(15). doi: 10.1088/1361-648X/adb192.

Abstract

Field-free switching of perpendicular magnetization has previously been observed in an epitaxial L1-ordered CoPt/CuPt bilayer and attributed to spin-orbit torque (SOT) arising from the crystallographic 3point group of the interface. Using a first-principles nonequilibrium Green's function formalism combined with the Anderson disorder model, we calculate the angular dependence of the SOT in a CoPt/CuPt bilayer and find that the magnitude of the 3SOT is about 20% of the conventional dampinglike SOT. We further study the magnetization dynamics in perpendicularly magnetized films in the presence of 3SOT and Dzyaloshinskii-Moriya interaction, using the equations of motion for domain wall dynamics and micromagnetic simulations. For systems where strong interfacial DMI results in the Néel character of domain walls, we find that a very large current density is required to achieve deterministic switching, because reorientation of the magnetization inside the domain wall is necessary to induce the switching asymmetry. For thicker films with relatively weak interfacial DMI and the Bloch character of domain walls, deterministic switching is possible at much smaller current densities, which may explain the recent experimental findings.

摘要

此前在一个外延L1有序的CoPt/CuPt双层膜中观察到了垂直磁化的无场切换,并将其归因于界面晶体学点群产生的自旋轨道矩(SOT)。我们使用第一性原理非平衡格林函数形式结合安德森无序模型,计算了CoPt/CuPt双层膜中SOT的角度依赖性,发现3SOT的大小约为传统类阻尼SOT的20%。我们进一步利用畴壁动力学运动方程和微磁模拟,研究了存在3SOT和Dzyaloshinskii-Moriya相互作用时垂直磁化薄膜中的磁化动力学。对于强界面DMI导致畴壁具有奈尔特性的系统,我们发现需要非常大的电流密度才能实现确定性切换,因为畴壁内磁化的重新取向对于诱导切换不对称是必要的。对于具有相对较弱界面DMI和布洛赫畴壁特性的较厚薄膜,在小得多的电流密度下就可能实现确定性切换,这可能解释了最近的实验结果。

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