Hamann-Borrero J E, Macke S, Gray B, Kareev M, Schierle E, Partzsch S, Zwiebler M, Treske U, Koitzsch A, Büchner B, Freeland J W, Chakhalian J, Geck J
Leibniz Institute for Solid State and Materials Research, IFW Dresden, 01171, Dresden, Germany.
Quantum Matter Institute, University of British Columbia, 2355 East Mall, Vancouver, V6T 1Z4, Canada.
Sci Rep. 2017 Oct 23;7(1):13792. doi: 10.1038/s41598-017-12642-7.
Combining dissimilar transition metal oxides (TMOs) into artificial heterostructures enables to create electronic interface systems with new electronic properties that do not exist in bulk. A detailed understanding of how such interfaces can be used to tailor physical properties requires characterization techniques capable to yield interface sensitive spectroscopic information with monolayer resolution. In this regard resonant x-ray reflectivity (RXR) provides a unique experimental tool to achieve exactly this. It yields the element specific electronic depth profiles in a non-destructive manner. Here, using a YBaCuO (YBCO) thin film, we demonstrate that RXR is further capable to deliver site selectivity. By applying a new analysis scheme to RXR, which takes the atomic structure of the material into account, together with information of the local charge anisotropy of the resonant ions, we obtained spectroscopic information from the different Cu sites (e.g., chain and plane) throughout the film profile. While most of the film behaves bulk-like, we observe that the Cu-chains at the surface show characteristics of electron doping, whereas the Cu-planes closest to the surface exhibit an orbital reconstruction similar to that observed at La Ca MnO/YBCO interfaces.
将不同的过渡金属氧化物(TMO)组合成人工异质结构能够创建具有新电子特性的电子界面系统,这些特性在体相中并不存在。要详细了解如何利用此类界面来定制物理性质,需要能够以单层分辨率产生界面敏感光谱信息的表征技术。在这方面,共振X射线反射率(RXR)提供了实现这一目标的独特实验工具。它以非破坏性方式产生元素特异性电子深度分布。在此,我们使用钇钡铜氧(YBCO)薄膜证明,RXR还能够实现位点选择性。通过将一种考虑材料原子结构以及共振离子局部电荷各向异性信息的新分析方案应用于RXR,我们从整个薄膜剖面的不同铜位点(例如,链和平面)获得了光谱信息。虽然薄膜的大部分表现出类似体相的行为,但我们观察到表面的铜链显示出电子掺杂的特征,而最靠近表面的铜平面表现出与在La Ca MnO/YBCO界面观察到的类似的轨道重构。