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Density functional theory calculations for magnetic properties of Co3W systems

机译:CO3W系统磁性能密度函数理论计算

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摘要

Cheaper permanent magnetic nanostructures with magnetic properties equivalent to those of noble-metal or rare-earth nanomagnets have been experimentally developed for their potential applications in ultrahigh storage densities in magnetic memory. To date, their intrinsic magnetic properties are not well understood under the micro-level of local atomic arrangements and electronic structures. In this work, we performed theoretical investigations on the Co3W bulk, the clean surface, nanoclusters, and the Co vertical bar Co(3)Wbilayers and superlattices for their geometrical structures, magnetic moments, and magnetic anisotropy energies (MAEs). We found that the Co3W nanostructures we constructed are stable and have the local minima in the energetic landscape, whose stabilities increase with increasing proportion of W and cluster size. The Co and W atoms in clusters are antiferromagnetically coupled, and their local magnetic moments decrease with increasing proportion of W. The breakdown of the Hund's third rule in W atoms observed in experiment can be interpreted as the competition between the intra-atomic spin-orbit coupling in W atoms and interatomic Co-W hybridizations. The highest MAE of about a few tens of meV is obtained in small cluster sizes, whereas it is an order of magnitude reduction in large cluster sizes. The magnetic systems of Co3W clean surface, Co vertical bar Co3W bilayer and superlattice can present large MAEs, and their easy-axes of magnetization are perpendicular to the (001) surface. Our calculated MAEs are of the same order of magnitude as that of the experimental measurements, and the electronic origin is revealed through the second-order perturbation method. Published by AIP Publishing.
机译:具有相当于磁性金属或稀土纳米磁片等相当于贵金属或稀土纳米磁石的更便宜的永磁纳米结构用于它们在磁记忆中的超高储存密度中的潜在应用。迄今为止,在局部原子布置和电子结构的微观水平下,它们的内在磁性尚不清楚。在这项工作中,我们对CO3W散装,清洁表面,纳米燃烧剂和CO垂直条CO(3)Wbilayers和超晶片进行了理论调查,用于它们的几何结构,磁矩和磁各向异性能量(MAES)。我们发现,我们构建的CO3W纳米结构是稳定的,并且在能量景观中具有局部最小值,其稳定性随着W和簇大小的比例而增加。簇中的CO和W原子是反铁磁体耦合的,并且它们的局部磁矩随着W的比例越来越低。在实验中观察到的W原子中的Hund的第三条规则的分解可以被解释为原子内自旋轨道之间的竞争在W原子和内部组合CO-W杂交中的偶联。大约几十MeV的最高MAE是在小簇大小的情况下获得的,而它是大簇大小的幅度级。 CO3W清洁表面的磁性系统,CO垂直条CO3W双层和超晶格可以呈现大MAE,并且它们的易磁化轴垂直于(001)表面。我们计算的MAE具有与实验测量值相同的数量级,通过二阶扰动方法揭示了电子来源。通过AIP发布发布。

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  • 来源
    《The Journal of Chemical Physics》 |2018年第1期|共14页
  • 作者单位

    Southwest Univ Sch Phys Sci &

    Technol Chongqing 400715 Peoples R China;

    Shaanxi Univ Technol Sch Mech Engn Hanzhong 723001 Shaanxi Peoples R China;

    Southwest Univ Sch Phys Sci &

    Technol Chongqing 400715 Peoples R China;

    Southwest Univ Sch Phys Sci &

    Technol Chongqing 400715 Peoples R China;

    Southwest Univ Sch Phys Sci &

    Technol Chongqing 400715 Peoples R China;

    Southwest Univ Sch Phys Sci &

    Technol Chongqing 400715 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
  • 关键词

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