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首页> 外文期刊>Journal of magnetism and magnetic materials >Thermally assisted magnetization reversal of a magnetic nanoparticle driven by a down-chirp microwave field pulse
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Thermally assisted magnetization reversal of a magnetic nanoparticle driven by a down-chirp microwave field pulse

机译:由下啁啾微波场脉冲驱动的磁纳米粒子的热辅助磁化反转

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It has been shown that a single-domain magnetic nanoparticle can be effectively switched by a linear down-chirp microwave field pulse (DCMWP) in zero temperature limit. However, finite temperature is ubiquitous in practice. Here, we study the effect of finite temperature on the DCMWP-induced magnetization reversal based on the stochastic Landau-Lifshitz-Gilbert equation. It is found that any one of the three controlling parameters of a DCMWP, i.e. the amplitude, chirp rate, or initial frequency, decreases with increasing temperature while the other two are fixed. The maximal temperature at which the reversal can happen increases with enlarging the system size. These phenomena are related to the facts that the energy barrier induced by anisotropy increases with the system volume, and the effective magnetization decreases with temperature. We also provide a set of optimal parameters for practical realization of our proposal. These findings may provide a way to realize low-cost and fast magnetization reversal with a wide operating temperature.
机译:已经表明,在零温度限制中,可以通过线性下啁啾微波场脉冲(DCMWP)有效地切换单畴磁性纳米粒子。然而,有限温度在实践中无处不在。在此,我们研究了基于随机Landau-Lifshitz-Gilbert方程的DCMWP诱导磁化反转的有限温度的影响。发现DCMWP的三个控制参数中的任何一个,即幅度,啁啾速率或初始频率,随着温度的增加而减小,而另外两个是固定的。逆转可能发生的最大温度随着系统尺寸而增加的增加。这些现象与各向异性诱导的能量屏障随着系统体积增加而导致的事实有关,并且有效磁化强度随温度降低。我们还提供了一系列最佳参数,以实现我们的建议。这些发现可以提供一种方法来实现具有宽工作温度的低成本和快速磁化反转。

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