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First-principles studies of complex magnetism in Mn nanostructures on the Fe(001) surface

机译:Fe(001)表面Mn纳米结构中复磁性的第一性原理研究

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摘要

The magnetic properties of Mn nanostructures on the Fe(001) surface have been studied using the noncollinear first-principles real space-linear muffin-tin orbital-atomic sphere approximation method within density-functional theory. We have considered a variety of nanostructures such as adsorbed wires, pyramids, and flat and intermixed clusters of sizes varying from two to nine atoms. Our calculations of interatomic exchange interactions reveal the long-range nature of exchange interactions between Mn-Mn and Mn-Fe atoms. We have found that the strong dependence of these interactions on the local environment, the magnetic frustration, and the effect of spin-orbit coupling lead to the possibility of realizing complex noncollinear magnetic structures such as helical spin spiral and half-skyrmion.
机译:在密度泛函理论下,采用非共线的第一性原理,真实的空间线性松饼-锡轨道-原子球近似方法研究了Fe(001)表面上的Mn纳米结构的磁性。我们已经考虑了各种纳米结构,例如吸附的金属丝,金字塔和大小从2到9个原子不等的扁平和混合簇。我们对原子间交换相互作用的计算揭示了Mn-Mn和Mn-Fe原子之间交换相互作用的远距离性质。我们已经发现,这些相互作用对局部环境,磁阻和自旋轨道耦合效应的强烈依赖性导致实现复杂的非共线磁性结构的可能性,例如螺旋自旋螺旋和半Skyrmion。

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