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Noncollinear magnetism of Cr and Mn nanoclusters on Ni(111): Changing the magnetic configuration atom by atom

机译:Ni(111)上Cr和Mn纳米团簇的非共线磁性:逐个原子改变磁性构型

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摘要

The Korringa-Kohn-Rostoker Green-function method for noncollinear magnetic structures was applied on Mn and Cr nanoclusters deposited on the Ni(111) surface. We consider various dimers, trimers, and tetramers. We obtain collinear and noncollinear magnetic solutions, brought about by the competition of antiferromagnetic interactions. It is found that the triangular geometry of the Ni(111) substrate, together with the intracluster antiferromagnetic interactions, is the main cause of the noncollinear states, which are secondarily affected by the cluster-substrate exchange interactions. The stabilization energy of the noncollinear, compared to the collinear, states is calculated to be typically of the order of 100 meV/atom, while multiple local-energy minima are found, corresponding to different noncollinear states, differing typically by 1-10 meV/atom. Open structures exhibit sizable total moments, while compact clusters tend to have very small total moments, resulting from the complex frustration mechanisms in these systems.
机译:将非共线磁性结构的Korringa-Kohn-Rostoker格林函数方法应用于沉积在Ni(111)表面的Mn和Cr纳米团簇上。我们考虑了各种二聚体,三聚体和四聚体。我们获得了由反铁磁相互作用引起的共线性和非共线性磁性解。发现,Ni(111)衬底的三角形几何形状以及簇内反铁磁相互作用是非共线态的主要原因,而非共线态又受簇-衬底交换相互作用的影响。与共线状态相比,非共线状态的稳定能经计算通常约为100 meV /原子,同时找到多个局部能量最小值,对应于不同的非共线状态,通常相差1-10 meV /原子。开放结构表现出相当大的总力矩,而紧凑型星团的总力矩往往很小,这是由于这些系统中复杂的挫折机制所致。

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