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首页> 外文期刊>Journal of Applied Physics >Micromagnetic simulations of current-induced magnetization switching in Co/Cu/Co nanopillars
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Micromagnetic simulations of current-induced magnetization switching in Co/Cu/Co nanopillars

机译:Co / Cu / Co纳米柱中电流感应磁化转换的微磁模拟

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We studied the current-induced magnetic switching in Co/Cu/Co nanopillars with an in-plane magnetization traversed by a perpendicular-to-plane spin-polarized current. The Landau-Lifshitz-Gilbert equation incorporating the spin transfer torque (STT) effect was employed. Magnetization switching was found to take place when the current density exceeds a threshold. It is accompanied by drastic oscillations near the magnetic reversal point. The switching time depends on the applied current density. The magnetization can also be switched by a sufficiently long square pulsed current. The roles of anisotropy, exchange, and demagnetization energies in the magnetization switching process of nanopillars are discussed. It is shown that the switching is mainly determined by the competition between STT and the Gilbert damping torque.
机译:我们研究了Co / Cu / Co纳米柱中电流感应的磁开关,其中垂直于平面的自旋极化电流横穿了平面内磁化强度。使用结合了自旋传递转矩(STT)效应的Landau-Lifshitz-Gilbert方程。发现当电流密度超过阈值时发生磁化切换。它伴随着磁性反转点附近的剧烈振荡。开关时间取决于施加的电流密度。磁化强度还可以通过足够长的方波脉冲电流进行切换。讨论了各向异性,交换和退磁能量在纳米柱的磁化转换过程中的作用。结果表明,切换主要取决于STT和吉尔伯特阻尼转矩之间的竞争。

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