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Induced magnetization in Cu atoms at the Fe-Co/Cu_3Au(001) interface: X-ray magnetic circular dichroism experiments and theoretical results

机译:在Fe-Co / Cu_3au(001)界面中的Cu原子中的磁化磁化:X射线磁性圆形二色性实验和理论结果

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摘要

The induced magnetization in Cu atoms at the interface between ferromagnetic (FM) Fe/Co ultrathin films and a nonmagnetic (NM) Cu3Au(001) substrate was explored by the investigation of two structures of five alternated Fe and Co monoatomic layers with different stacking orders with a Fe or a Co layer in direct contact with the Cu3Au (001) surface. First principles calculations were applied to disentangle the origin of magnetic proximity effects at these FM/NM interfaces. The hybridization between the electronic states of the FM layers, resulting in a pronounced widening of the d-bands of the local density of states of Fe-Co interface atoms, has a fundamental effect in the spin-polarization of the NM substrate. X-ray magnetic circular dichroism measurements at the L-2,L-3-edges of Fe, Co and Cu allowed to extract the spin and orbital magnetic moments of Fe and Co, and to measure extremely low magnetic moments induced in Cu atoms. It is shown that the magnetism is induced only in the Cu and Au atoms at the first CuAu monolayer at the very surface of the substrate, i.e., the Cu XMCD signal is due to only 0.5 ML magnetic Cu atoms.
机译:通过对不同堆叠顺序的五种交替的Fe和Co monoAtomic层的两个结构进行研究,探讨了在铁磁性(FM)Fe / Co超薄膜和非磁性(NM)Cu3au(001)衬底的界面处的Cu原子中的诱导磁化。用Fe或Co层直接接触Cu3au(001)表面。第一个原理计算被应用于解散这些FM / NM界面的磁性接近效应的起源。 FM层的电子状态之间的杂交,导致Fe-Co接口原子的状态密度的D频带的发音扩展,在NM衬底的旋转偏振中具有基本效果。 L-2,L-3边缘的X射线磁性圆形二色二分率测量允许允许纺丝和CO的旋转和轨道磁性矩,并测量Cu原子中诱导的极低磁性矩。结果表明,磁性仅在基材的非常表面处的第一个Cuau单层的Cu和Au原子中诱导,即,Cu XMCD信号仅是0.5ml磁性Cu原子。

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