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首页> 外文期刊>International Scholarly Research Notices >Micromagnetic Simulation of Spin Transfer Torque MagnetizationPrecession Phase Diagram in a Spin-Valve Nanopillar under External Magnetic Fields
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Micromagnetic Simulation of Spin Transfer Torque MagnetizationPrecession Phase Diagram in a Spin-Valve Nanopillar under External Magnetic Fields

机译:外磁场作用下自旋阀纳米柱自旋传递转矩磁化进动相图的微磁模拟

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摘要

We investigated spin transfer torque magnetization precession in a nanoscale pillar spin-valve under external magnetic fields using micromagnetic simulation. The phase diagram of the magnetization precession is calculated and categorized into four states according to their characteristics. Of the four states, the precessional state has two different modes: steady precession mode and substeady precession mode. The different modes originate from the dynamic balance between the spin transfer torque and the Gilbert damping torque. Furthermore, we reported the behavior of the temporal evolutions of magnetization components in steady precession mode at the condition of the applied magnetic field using the orbit projection method and explaining perfectly the magnetization components evolution behavior. In addition, a result of a nonuniform magnetization distribution is observed in the free layer due to the excitation of non-uniform mode.
机译:我们使用微磁模拟研究了外部磁场下纳米级柱形自旋阀中的自旋传递转矩磁化进动。计算出磁化进动的相图,并根据其特性将其分为四个状态。在这四个状态中,进动状态具有两种不同的模式:稳定进动模式和次稳定进动模式。不同的模式源自自旋转移扭矩与吉尔伯特阻尼扭矩之间的动态平衡。此外,我们使用轨道投影法报告了在外加磁场条件下稳定旋进模式下磁化分量的时间演化行为,并完美地解释了磁化分量的演化行为。另外,由于不均匀模式的激发,在自由层中观察到不均匀磁化分布的结果。

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