论文标题

Y(Co,Fe,Ni,Cu)磁晶的磁晶对第一原理计算$ _ 5 $基于全电力KKR Green的功能方法

First-principles Calculation of Magnetocrystalline Anisotropy of Y(Co,Fe,Ni,Cu)$_5$ Based on Full-potential KKR Green's Function Method

论文作者

Okumura, Haruki, Fukushima, Tetsuya, Akai, Hisazumi, Ogura, Masako

论文摘要

通过用铁,铜和镍等其他元素代替钴,可以改善永久磁铁YCO $ _5 $的性能。为了确定其最佳组成,有必要在一致的框架中执行系统的理论计​​算。在这项研究中,我们计算了y(co $ _ {1- x-y} $ _ {1-x-y} $ _ {1-x-y} $ _ {x} $ cu $ _ {y} $ _ 3 $ _ 3 $ _ {1- Z} $ _ $ _} $ _} $ _} $ _} $ _} $ _ {z z { Korringa-Kohn-Rostoker Green的功能方法与连贯的电位近似结合使用。 YCO $ _5 $的计算出的$ k _ {\ rm u} $小于实验值,因为由于轨道极化而缺少增强。虽然y(co $ _ {1- x-y} $ _ {1-x-y} $ _ {1-x-y} $ _ {x} $ _ {x} $ cu $ _ {y} $)$ _ 3 $ _ 3 $(co $ _ {1-z {1-z} $ ni $ _ {z {z} $ _ 2 $与他们的实验相比,在一致的框架内进行了分析。结果表明,yfe $ _3 $ co $ _2 $的$ k _ {\ rm u} = 5.00 $ mj/m $^3 $远比原始的yco $ $ _5 $($ k _ {\ rm u} = 1.82 $ mj/m $^3 $),以及$ k $ k ym a $ ym a ym a ym us us us us us u { yfe $ _3 $(CO $ _ {1-Z} $ ni $ _z $)$ _ 2 $。但是,$ z \ sim0.5 $的各向异性字段可以与yco $ _5 $的值竞争。

The performance of permanent magnets YCo$_5$ can be improved by replacing cobalt with other elements, such as iron, copper, and nickel. In order to determine its optimum composition, it is necessary to perform systematic theoretical calculations in a consistent framework. In this study, we calculated the magnetocrystalline anisotropy constant $K_{\rm u}$ of Y(Co$_{1-x-y}$Fe$_{x}$Cu$_{y}$)$_3$(Co$_{1-z}$Ni$_{z}$)$_2$ on the basis of the full-potential Korringa-Kohn-Rostoker Green's function method in conjunction with the coherent potential approximation. The calculated $K_{\rm u}$ of YCo$_5$ was smaller than the experimental value because of a missing enhancement due to orbital polarization. Although the value of $K_{\rm u}$ of Y(Co$_{1-x-y}$Fe$_{x}$Cu$_{y}$)$_3$(Co$_{1-z}$Ni$_{z}$)$_2$ was systematically underestimated compared to their experimental counterparts, the doping effect can be analyzed within a consistent framework. The results have shown that YFe$_3$Co$_2$ has much higher $K_{\rm u}=5.00$ MJ/m$^3$ than pristine YCo$_5$ ($K_{\rm u}=1.82$ MJ/m$^3$), and that nickel as a stabilization element decreases $K_{\rm u}$ and magnetization in YFe$_3$(Co$_{1-z}$Ni$_z$)$_2$. However, the anisotropy field of $z\sim0.5$ can compete with the value of YCo$_5$.

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