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Damping dependence of the reversal time of the magnetization of single-domain ferromagnetic particles for the Neel-Brown model: Langevin dynamics simulations versus analytic results

机译:Neel-Brown模型的单畴铁磁粒子磁化反转时间的阻尼依赖性:Langevin动力学模拟与分析结果

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摘要

The damping dependence of the thermally activated reversal time of the magnetization of noninteracting uniaxial single-domain ferromagnetic particles is determined using Langevin dynamics simulations and the analytic Neel-Brown theory with the latter given both in the form of the exact matrix-continued fraction solution of the governing Fokker-Planck equation and its accompanying asymptotes for the escape rate. The reversal time from Langevin dynamics simulations is extremely sensitive to the initial and switching conditions used. Thus if the latter are chosen inappropriately the simulation result may markedly disagree with the analytic one particularly for low damping, where the precessional effects dominate, so that complete agreement can only be obtained by correctly choosing these conditions.
机译:非交互作用单轴单畴铁磁粒子的磁化热激活逆转时间的阻尼依赖性通过Langevin动力学模拟和Neel-Brown解析理论确定,后者以精确的矩阵连续分数解形式给出Fokker-Planck方程及其逃生率的渐近渐近性。 Langevin动力学仿真的反转时间对所用的初始和切换条件极为敏感。因此,如果不恰当地选择后者,则模拟结果可能会与分析结果明显不同,特别是对于低阻尼而言,其中进动效应占主导地位,因此只有通过正确选择这些条件才能获得完全一致。

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