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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Determination of intrinsic switching field distributions in perpendicular recording media: Numerical study of the ΔH(M,ΔM) method
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Determination of intrinsic switching field distributions in perpendicular recording media: Numerical study of the ΔH(M,ΔM) method

机译:垂直记录介质中固有开关场分布的确定:ΔH(M,ΔM)方法的数值研究

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We present a numerical study of the ΔH(M,ΔM) method and its ability to accurately determine intrinsic switching field distributions in interacting granular magnetic materials such as perpendicular recording media. In particular, we study how this methodology fails for large ferromagnetic intergranular interactions, at which point the associated strongly correlated magnetization reversal cannot be properly represented by the mean-field approximation, upon which the ΔH(M,ΔM) method is based. In this study, we use a two-dimensional array of symmetric hysterons that have an intrinsic switching field distribution of standard deviation σ and ferromagnetic nearest-neighbor interactions J. We find the ΔH(M,ΔM) method to be very accurate for small J/σ values, while substantial errors develop once the effective exchange field becomes comparable with σ, corroborating earlier results from micromagnetic simulations. We furthermore demonstrate that this failure is correlated with deviations from data set redundancy, which is a key property of the mean-field approximation. Thus, the ΔH(M,ΔM) method fails in a well defined and quantifiable manner that can be easily assessed from the data sets alone.
机译:我们对ΔH(M,ΔM)方法及其精确确定相互作用的粒状磁性材料(例如垂直记录介质)中的固有开关场分布的能力进行了数值研究。特别是,我们研究了这种方法对于大的铁磁晶间相互作用是如何失败的,此时,关联的强相关磁化强度反转无法通过ΔH(M,ΔM)方法所基于的平均场近似来正确表示。在这项研究中,我们使用对称迟滞的二维阵列,该阵列具有标准偏差σ和铁磁最近邻相互作用J的固有转换场分布。我们发现ΔH(M,ΔM)方法对于小J而言非常准确/σ值,而一旦有效交换场变得与σ相当,就会产生大量误差,从而证实了微磁模拟的早期结果。我们进一步证明,这种故障与数据集冗余的偏差有关,这是平均场近似的关键特性。因此,ΔH(M,ΔM)方法以定义明确且可量化的方式失败,可以仅从数据集中轻松评估。

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