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首页> 外文期刊>Magnetics, IEEE Transactions on >Temperature Dependence of Microwave Nano-Oscillator Linewidths Driven by Spin-Polarized Currents: A Micromagnetic Analysis
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Temperature Dependence of Microwave Nano-Oscillator Linewidths Driven by Spin-Polarized Currents: A Micromagnetic Analysis

机译:自旋极化电流驱动的微波纳米振荡器线宽的温度依赖性:微观分析

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摘要

The dependence of the linewidth on the temperature in a spin valve driven by spin-polarized currents is analyzed by means of full micromagnetic simulations. The results are compared to the recent analytical predictions by Tiberkevic and confirmed by the experiments of Boone In agreement with the Tiberkevic theory and experiments of Sankey , our micromagnetic results point out two regimes. The linewidth increases linearly with the temperature until a threshold value, above which a square root dependence is observed.
机译:借助于完整的微磁仿真,可以分析线宽对自旋极化电流驱动的自旋阀中温度的依赖性。将结果与Tiberkevic最近的分析预测进行比较,并通过Boone的实验进行了证实。与Tiberkevic理论和Sankey的实验一致,我们的微磁结果指出了两种机制。线宽随温度线性增加,直到达到阈值为止,在该阈值之上可观察到平方根相关性。

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