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Epitaxial growth of thermally stable cobalt films on Au(111)

机译:热稳定钴膜在Au(111)上的外延生长

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摘要

Ferromagnetic thin films play a fundamental role in spintronic applications as a source for spin polarized carriers and in fundamental studies as ferromagnetic substrates. However, it is challenging to produce such metallic films with high structural quality and chemical purity on single crystalline substrates since the diffusion barrier across the metal-metal interface is usually smaller than the thermal activation energy necessary for smooth surface morphologies. Here, we introduce epitaxial thin Co films grown on an Au(111) single crystal surface as a thermally stable ferromagnetic thin film. Our structural investigations reveal an identical growth of thin Co/Au(111) films compared to Co bulk single crystals with large monoatomic Co terraces with an average width of 500 ?, formed after thermal annealing at 575 K. Combining our results from photoemission and Auger electron spectroscopy, we provide evidence that no significant diffusion of Au into the near surface region of the Co film takes place for this temperature and that no Au capping layer is formed on top of Co films. Furthermore, we show that the electronic valence band is dominated by a strong spectral contribution from a Co 3d band and a Co derived surface resonance in the minority band. Both states lead to an overall negative spin polarization at the Fermi energy.
机译:铁磁薄膜在自旋电子学应用中作为自旋极化载流子的来源以及在基础研究中作为铁磁基板起着基本作用。然而,在单晶衬底上制备具有高结构质量和化学纯度的金属膜是具有挑战性的,因为跨金属-金属界面的扩散势垒通常小于光滑表面形态所需的热活化能。在这里,我们介绍在Au(111)单晶表面上生长的外延Co薄膜作为热稳定的铁磁薄膜。我们的结构研究表明,与具有575 K的热退火后形成的平均宽度为500?的具有大单原子Co台阶的Co大块单晶的Co大块单晶相比,Co / Au(111)薄膜的生长相同。结合我们的光发射和俄歇结果在电子光谱学中,我们提供了证据表明在该温度下Au不会明显扩散到Co膜的近表面区域,并且Co膜的顶部没有形成Au覆盖层。此外,我们表明,电子价带主要由Co 3d谱带的强光谱贡献和少数谱带中Co衍生的表面共振所主导。两种状态都在费米能量处导致整体负自旋极化。

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