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Magnetic properties of 3d transition metal chains on vicinal Cu(111) surface

机译:邻近Cu(111)表面上的3D过渡金属链的磁性

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Density functional theory (DFT) is applied in our study to describe magnetic properties of 3d transition metal (TM) nanowires on a stepped Cu(111) surface. The basic template to study such metallic chains on the Cu(111) surface is an embedded Fe chain at one-atom distance away from the upper edge of the monoatomic surface step. Chains of 3d transition metal atoms from Sc to Ni are added on top of the Fe chain. At the beginning of the 3d row, the chains show antiferromagnetic order. A small energy difference between ferromagnetic and antiferromagnetic order is obtained for the Mn-Fe system. Cr forms an antiferromagnetic chain, whereas Fe, Co, and Ni chains are ferromagnetically coupled to the embedded Fe chain.
机译:密度函数理论(DFT)应用于我们的研究中,以描述阶梯式Cu(111)表面上的3D过渡金属(TM)纳米线的磁性。在Cu(111)表面上研究这种金属链的基本模板是一个原子距离的嵌入式Fe链远离MONOATOMIC表面步骤的上边缘。从SC到Ni的3D过渡金属原子的链子加入Fe链的顶部。在3D行的开头时,链条显示反铁磁序列。为MN-FE系统获得铁磁和反铁磁阶之间的小能量差。 CR形成反铁磁链,而Fe,Co和Ni链是铁磁性耦合到嵌入式Fe链。

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