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首页> 外文期刊>Journal of magnetism and magnetic materials >Kinetic Monte Carlo simulations of the effect of the exchange control layer thickness in CoPtCrB/CoPtCrSiO granular media
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Kinetic Monte Carlo simulations of the effect of the exchange control layer thickness in CoPtCrB/CoPtCrSiO granular media

机译:CoPtCrB / CoPtCrSiO颗粒介质中交换控制层厚度影响的动力学蒙特卡洛模拟

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摘要

A hybrid Landau Lifshitz Gilbert/kinetic Monte Carlo algorithm is used to simulate experimental magnetic hysteresis loops for dual layer exchange coupled composite media. The calculation of the rate coefficients and difficulties arising from low energy barriers, a fundamental problem of the kinetic Monte Carlo method, are discussed and the methodology used to treat them in the present work is described. The results from simulations are compared with experimental vibrating sample magnetometer measurements on dual layer CoPtCrB/CoPtCrSiO media and a quantitative relationship between the thickness of the exchange control layer separating the layers and the effective exchange constant between the layers is obtained. Estimates of the energy barriers separating magnetically reversed states of the individual grains in zero applied field as well as the saturation field at sweep rates relevant to the bit write speeds in magnetic recording are also presented. The significance of this comparison between simulations and experiment and the estimates of the material parameters obtained from it are discussed in relation to optimizing the performance of magnetic storage media.
机译:Landau Lifshitz Gilbert /动力学蒙特卡罗混合算法用于模拟双层交换耦合复合介质的实验磁滞回线。讨论了速率系数和低能垒引起的困难的计算,这是动力学蒙特卡洛方法的基本问题,并描述了本工作中用于处理它们的方法。将模拟的结果与在双层CoPtCrB / CoPtCrSiO介质上的实验振动样品磁力计的测量结果进行比较,得出分离各层的交换控制层的厚度与各层之间有效交换常数之间的定量关系。还介绍了在与磁场记录中的位写入速度相关的扫描速率下,在零施加场和饱和场中分隔单个晶粒的磁性反转状态的能垒的估计。讨论了在模拟和实验之间进行这种比较以及从中获得的材料参数估计值与优化磁存储介质性能有关的意义。

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  • 来源
    《Journal of magnetism and magnetic materials》 |2018年第5期|327-336|共10页
  • 作者单位

    Department of Physics and Physical Oceanography, Memorial University of Newfoundland;

    Department of Computer Science, Memorial University of Newfoundland;

    Department of Physics and Physical Oceanography, Memorial University of Newfoundland;

    Department of Physics and Physical Oceanography, Memorial University of Newfoundland;

    7206 Meadowdale Dr;

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