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Magnetism in thin Cr films grown on Fe(001)-p(1×1)O: a spin-resolved investigation of single and multi-layers

机译:Fe(001)-p(1×1)O上生长的Cr薄膜中的磁性:单层和多层的自旋分辨研究

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We present a combined experimental and theoretical investigation of the magnetic behavior of ultra-thin Cr films grown on oxygen-passivated Fe(001)-p(1×1)O substrates. In all cases, oxygen floats on the metal/vacuum interface, where a monolayer-range oxide with peculiar electronic and structural characteristics is formed. Significant differences with previous experimental realizations of the Cr/Fe(001) heterostructure are thus introduced by the presence of oxygen. However, we show here that the magnetic behavior of our system is characterized by the same AF stacking at the Cr-Fe interface and by a layer-wise AF order in the Cr layer. In addition, we are able to circumvent the issue of chemical mixing at the Cr-Fe interface, characteristic of standard preparations.
机译:我们提供了结合实验和理论研究的氧钝化的Fe(001)-p(1×1)O衬底上生长的超薄Cr膜的磁行为。在所有情况下,氧气都会漂浮在金属/真空界面上,形成具有独特电子和结构特征的单层范围氧化物。因此,由于氧的存在,与先前的Cr / Fe(001)异质结构的实验实现方式存在显着差异。但是,我们在这里表明,我们系统的磁性能的特征是在Cr-Fe界面处具有相同的AF堆积,并在Cr层中具有分层的AF顺序。此外,我们能够规避标准制剂特有的Cr-Fe界面的化学混合问题。

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