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Spin-correlations and magnetic structure in an Fe monolayer on 5d transition metal surfaces

机译:5d过渡金属表面上Fe单层的自旋相关性和磁性结构

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摘要

We present a detailed first principles study on the magnetic structure of an Fe monolayer on different surfaces of 5d transition metals. We use the spin-cluster expansion technique to obtain parameters of a spin model, and predict the possible magnetic ground state of the studied systems by employing the mean field approach and, in certain cases, by spin dynamics calculations. We point out that the number of shells considered for the isotropic exchange interactions plays a crucial role in the determination of the magnetic ground state. In the case of Ta substrate we demonstrate that the out-of-plane relaxation of the Fe monolayer causes a transition from ferromagnetic to antiferromagnetic ground state. We examine the relative magnitude of nearest neighbour Dzyaloshinskii–Moriya (D) and isotropic (J) exchange interactions in order to get insight into the nature of magnetic pattern formations. For the Fe/Os(0 0 0 1) system we calculate a very large D/J ratio, correspondingly, a spin spiral ground state. We find that, mainly through the leading isotropic exchange and Dzyaloshinskii–Moriya interactions, the inward layer relaxation substantially influences the magnetic ordering of the Fe monolayer. For the Fe/Re(0 0 0 1) system characterized by large antiferromagnetic interactions we also determine the chirality of the 120° Néel-type ground state.
机译:我们提出了关于5d过渡金属不同表面上的Fe单层磁性结构的详细的第一原理研究。我们使用自旋簇扩展技术获取自旋模型的参数,并通过采用平均场方法以及在某些情况下通过自旋动力学计算来预测所研究系统的可能磁基态。我们指出,考虑各向同性交换相互作用的壳的数量在确定磁性基态中起着至关重要的作用。在Ta衬底的情况下,我们证明了Fe单层的平面外弛豫会导致从铁磁基态到反铁磁基态的转变。我们研究了最近邻Dzyaloshinskii-Moriya(D)和各向同性(J)交换相互作用的相对强度,以便深入了解磁模式形成的性质。对于Fe / Os(0 0 0 1)系统,我们计算出非常大的D / J比,相应地是自旋螺旋基态。我们发现,主要通过主要的各向同性交换和Dzyaloshinskii-Moriya相互作用,内层弛豫实质上影响了Fe单层的磁有序性。对于以大反铁磁相互作用为特征的Fe / Re(0 0 0 1)系统,我们还确定了120°Néel型基态的手性。

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