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Determining the coercivity of anisotropic Heisenberg magnets by Monte Carlo sampling: Application to the design of permanent magnets

机译:Monte Carlo采样测定各向异性Heisenberg磁体的矫顽力:应用于永磁体的设计

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摘要

Monte Carlo methods are widely used to study magnetism. However, their use to the calculation of coercivity has been problematic because of difficulties in quantifying Monte Carlo time. Here we propose a new approach of studying coercivity based on Monte Carlo sampling of the switching time at different reverse fields. This method allows comparative analysis of how coercivity is affected by various factors without needing time quantification of the Monte Carlo step. We apply the new method to study antiferromagnet-ferromagnet exchange coupling systems and show that practically large coercivity and enhanced maximum energy product can be achieved by properly adding antiferromagnet to high-magnetization ferromagnets such as Fe_(16)N_2. The finding is important to the design of new rare-earth-free permanent magnets.
机译:蒙特卡罗方法广泛用于研究磁性。 然而,由于在量化Monte Carlo时间时,它们对矫顽力的计算的用途已经存在问题。 在这里,我们提出了一种基于不同反向场的切换时间的蒙特卡罗采样来研究矫顽力的新方法。 该方法允许对矫顽力受到各种因素的影响的比较分析,而无需时间量化蒙特卡罗步骤。 我们应用新方法来研究反霉素 - 铁磁体交换耦合系统,并且表明,通过适当地将反霉菌和高磁化铁磁体(例如FE_(16)N_2)适当地添加反霉菌和增强的最大能量产品,可以实现大的矫顽力和增强的最大能量产品。 该发现对于设计新的无稀土永磁体很重要。

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  • 来源
    《Journal of magnetism and magnetic materials》 |2021年第8期|167928.1-167928.5|共5页
  • 作者

    Xudong Hang; Jian-Ping Wang;

  • 作者单位

    Department of Chemical Engineering and Materials Science University of Minnesota Minneapolis MN 55455 United States;

    Department of Electrical and Computer Engineering University of Minnesota Minneapolis MN 55455 United States Department of Chemical Engineering and Materials Science University of Minnesota Minneapolis MN 55455 United States;

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  • 正文语种 eng
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