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Local determination of the terminating layer of SrTiO3

机译:SrTiO3终止层的局部测定

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Abstract: The crystallinity and physical properties of complex oxide films are strongly influenced by the quality of the substrate. This is determined by the bulk microstructure (e.g. grains, twin boundaries, vacancies) and by the surface characteristics. In the case of single-crystal films grown on single-crystal substrates, the latter point becomes extremely important and has to be studied in detail at the nanometer scale. In the case of SrTiO$-3$/ (001) substrates, the fabrication process usually leads to samples with different surfaces. The topography itself is very sensitive to process parameters, and has exhaustively been studied in the past few years. The terminating layer can be a mixture of both SrO and TiO$-2$/ planes. Only few techniques can determine this surface chemical composition, and so far only on a macroscopic scale. We report here, for the first time, the chemical characterization of such a surface, for which we use a combination of annealing and scanning probe microscopy. We then applied the same technique to the characterization of the surface LaAlO$-3$/ (001) and SrLaAlO$-4$/ (001) substrates. So far, no friction contrast has been observed on these latter surfaces. In the case of LaAlO$-3$/, the characteristic twin structure is clearly revealed. !18
机译:摘要:复合氧化物膜的结晶度和物理性能受基材质量的强烈影响。这取决于整体的微观结构(例如晶粒,孪晶边界,空位)和表面特性。在单晶衬底上生长单晶膜的情况下,后一点变得非常重要,必须在纳米尺度上进行详细研究。对于SrTiO $ -3 $ /(001)基板,制造过程通常会导致样品具有不同的表面。地形本身对工艺参数非常敏感,并且在过去的几年中进行了详尽的研究。终止层可以是SrO和TiO $ -2 $ /平面的混合物。只有很少的技术可以确定这种表面化学成分,并且到目前为止,仅在宏观范围内。我们在这里首次报告了这种表面的化学特征,为此我们结合使用了退火和扫描探针显微镜。然后,我们将相同的技术应用于表面LaAlO $ -3 $ /(001)和SrLaAlO $ -4 $ /(001)衬底的表征。到目前为止,在这些后面的表面上还没有观察到摩擦反差。在LaAlO $ -3 $ /的情况下,特征双胞胎结构清晰可见。 !18

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