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首页> 外文期刊>Physical review >Thickness-dependent magnetic structure of ultrathin Fe/Ir(001) films: From spin-spiral states toward ferromagnetic order
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Thickness-dependent magnetic structure of ultrathin Fe/Ir(001) films: From spin-spiral states toward ferromagnetic order

机译:Fe / Ir(001)超薄薄膜的厚度依赖性磁性结构:从自旋螺旋态到铁磁序

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We present a detailed study of the ground-state magnetic structure of ultrathin Fe films on the surface of fee Ir(001). We use the spin-cluster expansion technique in combination with the relativistic disordered local moment scheme to obtain parameters of spin models and then determine the favored magnetic structure of the system by means of a mean-field approach and atomistic spin dynamics simulations. For the case of a single monolayer of Fe, we find that layer relaxations very strongly influence the ground-state spin configurations, whereas Dzyaloshinskii-Moriya (DM) interactions and biquadratic couplings also have remarkable effects. To characterize the latter effect, we introduce and analyze spin collinearity maps of the system. While for two monolayers of Fe we find a single-q spin spiral as ground state due to DM interactions, for the case of four monolayers, the system shows a noncollinear spin structure with nonzero net magnetization. These findings are consistent with experimental measurements indicating ferromagnetic order in films of four monolayers and thicker.
机译:我们目前对费Ir(001)表面超薄铁膜的基态磁性结构进行了详细研究。我们将自旋簇扩展技术与相对论性无序局部矩方案结合使用,以获得自旋模型的参数,然后通过均值场方法和原子自旋动力学仿真来确定系统偏爱的磁结构。对于单层Fe,我们发现层弛豫非常强烈地影响基态自旋构型,而Dz​​yaloshinskii-Moriya(DM)相互作用和双二次耦合也具有显着影响。为了表征后一种效应,我们介绍并分析了系统的自旋共线性图。对于两个单层的Fe,由于DM相互作用,我们发现一个单q自旋螺旋为基态,对于四个单层,该系统显示了具有非零净磁化强度的非共线自旋结构。这些发现与实验测量结果一致,表明在四个单层或更厚的膜中铁磁有序。

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