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首页> 外文期刊>Physical review.B.Condensed matter and materials physics >Magnetization dynamics of granular heat-assisted magnetic recording media by means of a multiscale model
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Magnetization dynamics of granular heat-assisted magnetic recording media by means of a multiscale model

机译:多尺度模型颗粒热辅助磁记录介质的磁化动力学

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摘要

Heat-assisted magnetic recording (HAMR) technology represents the most promising candidate to replace the current perpendicular recording paradigm to achieve higher storage densities. To better understand HAMR dynamics in granular media we need to describe accurately the magnetization dynamics up to temperatures close to the Curie point. To this end we propose a multiscale approach based on the Landau-Lifshitz-Bloch (LLB) equation of motion parametrized using atomistic calculations. The LLB formalism describes the magnetization dynamics at finite temperature and allows us to efficiently simulate large system sizes and long time scales. Atomistic simulations provide the required temperature dependent input quantities for the LLB equation, such as the equilibrium magnetization and the anisotropy and can be used to capture the detailed magnetization dynamics. The multiscale approach makes it possible to overcome the computational limitations of atomistic models in dealing with large systems, such as a recording track, while incorporating the basic physics of the HAMR process. We investigate the magnetization dynamics of a single FePt grain as a function of the properties of the temperature profile and applied field and test the LLB results against atomistic calculations. Our results prove the appropriateness and potential of the approach proposed here where the granular model is able to reproduce the atomistic simulations and capture the main properties of a HAMR medium.
机译:热辅助磁记录(HAMR)技术代表更换当前垂直记录范例以实现更高存储密度的最有前途的候选者。为了更好地了解颗粒介质中的HAMR动态,我们需要准确地描述磁化动态,高达靠近居里点的温度。为此,我们提出了一种基于Landau-Lifshitz-Bloch(LLB)的Multiscale方法使用原子计算的运动参数化。 LLB形式主义在有限温度下描述了磁化动态,并允许我们有效地模拟大型系统尺寸和长时间尺度。原子仿真为LLB方程提供所需的温度依赖性输入量,例如平衡磁化和各向异性,并且可用于捕获详细的磁化动态。多尺度方法使得可以克服原子模型在处理大型系统(例如录音轨道)的计算限制,同时结合了HAMR过程的基本物理。我们研究单个备用颗粒的磁化动力学,作为温度曲线的性质和施加的场的函数,并测试LLB反对原子计算的结果。我们的结果证明了在此提出的方法的适当性和潜力,其中粒状模型能够再现原子模拟并捕获HAMR培养基的主要特性。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2020年第17期|174419.1-174419.8|共8页
  • 作者单位

    Department of Physics Mahasarakham University Mahasarakham 44150 Thailand;

    Department of Physics Mahasarakham University Mahasarakham 44150 Thailand;

    Department of Physics Mahasarakham University Mahasarakham 44150 Thailand;

    Department of Physics University of York York YO10 5DD United Kingdom;

    Department of Physics University of York York YO10 5DD United Kingdom;

    Department of Physics University of York York YO10 5DD United Kingdom;

    Department of Physics Mahasarakham University Mahasarakham 44150 Thailand;

    Department of Physics Mahasarakham University Mahasarakham 44150 Thailand;

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