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Orbital moments of 3d adatoms and Co nanostructures on Cu(001) surfaces

机译:Cu(001)表面上3d原子和Co纳米结构的轨道矩

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We use ab initio calculations to investigate spin and orbital moments of 3d transition-metal adatoms and Co nanostructures on Cu(001) surfaces. For Fe and Co adatoms on Cu(001) we predict extremely large orbital moments, comparable to the spin moments at these sites. For Mn and Cr adatoms the orbital moments are extremely small and can be neglected in face of their rather large spin moments. Ni adatorns on Cu(001) were found to be non-magnetic. Our investigations for adsorbed flat clusters of Co on Cu(001) address the persistence and extent of these large orbital moments in the clusters as a function of their size. We find that, the average orbital moment (M-orb) per Co atom is strongly correlated with the coordination number, decreasing drastically and monotonically as the average number of first Co neighbors around the sites in the cluster (N-Co) is increased. (c) 2005 Elsevier B.V. All rights reserved.
机译:我们使用从头算计算来研究Cu(001)表面上3d过渡金属原子和Co纳米结构的自旋和轨道矩。对于Cu(001)上的Fe和Co原子,我们预测到的轨道矩非常大,与这些位置的自旋矩相当。对于Mn和Cr原子而言,轨道力矩非常小,面对较大的自旋力矩,可以忽略不计。发现Cu(001)上的Ni掺杂物是非磁性的。我们对吸附在Cu(001)上的Co的平坦簇的研究解决了簇中这些大轨道矩的持久性和程度与簇大小的关系。我们发现,每个Co原子的平均轨道矩(M-orb)与配位数紧密相关,随着簇中位点(N-Co)周围第一个Co邻居的平均数目的增加,其急剧单调减少。 (c)2005 Elsevier B.V.保留所有权利。

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