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The effect of a Pt impurity layer on the magnetocrystalline anisotropy of hexagonal close-packed Co: a first-principles study

机译:Pt杂质层对六方密堆积Co的磁晶各向异性的影响:第一性原理研究

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摘要

On the basis of the fully relativistic screened Korringa–Kohn–Rostoker method we investigate the variation in the magnetocrystalline anisotropy energy (MAE) of hexagonal close-packed cobalt with the addition of platinum impurities. In particular, we perform calculations on a bulk cobalt system in which one of the atomic layers contains a fractional, substitutional platinum impurity. Our calculations show that at small concentrations of platinum the MAE is reduced, while at larger concentrations the MAE is enhanced. This change in the MAE can be attributed to an interplay between on-site Pt MAE contributions and induced MAE contributions on the Co sites. The latter are subject to pronounced, long-ranged Friedel oscillations that can lead to significant size effects in the experimental determination of the MAE of nanosized samples.
机译:在完全相对论性筛选的Korringa–Kohn–Rostoker方法的基础上,我们研究了六方密堆积钴和铂杂质的磁晶各向异性能(MAE)的变化。尤其是,我们对其中原子层之一包含部分可替代铂杂质的整体钴系统进行了计算。我们的计算表明,在铂的浓度较低时,MAE会降低,而在浓度较高的情况下,MAE会提高。 MAE的这种变化可归因于现场Pt MAE贡献与Co站点上诱导的MAE贡献之间的相互作用。后者会受到明显的远距离Friedel振荡的影响,这在纳米样品的MAE的实验测定中可能导致明显的尺寸效应。

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