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Micromagnetic Modeling of Magnetization Dynamics in Magnetic Tunnel Junctions Driven by Spin-Polarized Current

机译:旋转偏振电流驱动磁隧道交界中磁化动力学的微磁性建模

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This paper presents micromagnetic simulations of magnetization dynamics driven by Spin-Polarized current in Magnetic Tunnel Junctions (MTJ). The model is based on the coupling between the Gilbert equation and the first-principle term deduced by Slonczewski. The switching between the APS and PS occurs by a nucleation process. A comparison with spin valves shows that for the same range of currents and fields the switching time is longer for the MTJ.
机译:本文介绍了磁隧道结(MTJ)中旋转偏振电流驱动的磁化动力学的微观仿真。该模型基于Gilbert方程与Slonczewski推断的第一原理术语之间的耦合。通过成核过程发生AP和PS之间的切换。与旋转阀的比较表明,对于相同的电流和字段,开关时间对于MTJ而言更长。

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