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Precessional switching of thin nanomagnets: analytical study

机译:薄纳米磁体的进动切换:分析研究

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We study analytically the precessional switching of the magnetization of a thin macrospin. We analyze its response when subjected to an external field along its in-plane hard axis. We derive the exact trajectories of the magnetization. The switching versus non switching behavior is delimited by a bifurcation trajectory, for applied fields equal to half of the effective anisotropy field. A magnetization going through this bifurcation trajectory passes exactly along the hard axis and exhibits a vanishing characteristic frequency at that unstable point, which makes the trajectory noise sensitive. Attempting to approach the related minimal cost in applied field makes the magnetization final state unpredictable. We add finite damping in the model as a perturbative, energy dissipation factor. For a large applied field, the system switches several times back and forth. Several trajectories can be gone through before the system has dissipated enough energy to converge to one attracting equilibrium state. For some moderate fields, the system switches only once by a relaxation dominated precessional switching. We show that the associated switching field increases linearly with the damping parameter. The slope scales with the square root of the effective anisotropy. Our simple concluding expressions are useful to assess the potential application of precessional switching in magnetic random access memories.
机译:我们分析地研究细大自旋的磁化的进动切换。我们分析了其沿面内硬轴受到外场作用时的响应。我们得出磁化的确切轨迹。对于等于有效各向异性场的一半的施加场,切换与非切换行为由分叉轨迹界定。穿过该分叉轨迹的磁化正好沿着硬轴通过,并在该不稳定点处显示出消失的特征频率,这使轨迹噪声敏感。试图在应用领域中接近相关的最小成本使得磁化最终状态不可预测。我们在模型中添加了有限阻尼作为微扰的能量耗散因子。对于较大的应用领域,系统会来回切换几次。在系统耗散足够的能量以收敛到一个吸引性的平衡状态之前,可以经过几条轨迹。对于某些中等领域,系统仅通过松弛为主的进动切换仅切换一次。我们表明,相关的开关场随阻尼参数线性增加。斜率与有效各向异性的平方根成比例。我们的简单结论表达式可用于评估旋进切换在磁性随机存取存储器中的潜在应用。

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