首页> 外文期刊>IEE proceedings. Part G, Circuits, devices and systems >Spin-current-induced high-frequency magnetisation rotations and microwave oscillations in magnetic nanodevices
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Spin-current-induced high-frequency magnetisation rotations and microwave oscillations in magnetic nanodevices

机译:自旋电流诱导的磁性纳米器件中的高频磁化旋转和微波振荡

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摘要

In the paper, the authors first review the structural and functional characteristics of magnetic nanodevices where magnetisation rotations and microwave oscillations are induced by DC electrical currents due to the spin-transfer torque effect. A comparison is made between devices with different structures. Micromagnetic simulations based on the modified Landau-Lifshitz-Gilbert equation are carried out in detail on one of the structures. The study shows that the spin-polarised direct current drives the inhomogeneous magnetisation configuration to rotate in the constrained square magnet structure. Magnetisation configurations and dynamics depend on the input current density and the structure dimension.
机译:在本文中,作者首先回顾了磁性纳米器件的结构和功能特性,在磁性纳米器件中,由于自旋传递转矩效应,直流电流会引起磁化旋转和微波振荡。在具有不同结构的设备之间进行比较。在其中一种结构上详细进行了基于改进的Landau-Lifshitz-Gilbert方程的微磁模拟。研究表明,自旋极化直流电驱动不均匀的磁化结构在受约束的方形磁体结构中旋转。磁化配置和动力学取决于输入电流密度和结构尺寸。

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