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首页> 外文期刊>Physical Review, B. Condensed Matter >ATOMIC-SCALE STRUCTURE OF A SRTIO3 BICRYSTAL BOUNDARY STUDIED BY SCANNING TUNNELING MICROSCOPY
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ATOMIC-SCALE STRUCTURE OF A SRTIO3 BICRYSTAL BOUNDARY STUDIED BY SCANNING TUNNELING MICROSCOPY

机译:扫描隧道显微镜研究的SRTIO3双晶界的原子尺度结构

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An atomically flat and well ordered c(6 X 2)(001) surface of a [100] tilted (2 X 12 degrees) artificial SrTiO3 bicrystal was prepared by thermal annealing in oxygen and ultrahigh vacuum, and characterized with low-energy electron diffraction and scanning tunneling microscopy. The real-space images of the boundary show that the bicrystal boundary is not straight, but zigzagged along the [100] and [010] crystal axis, and grooved with a depth of several atomic steps down: to the bulk. We attribute the observed boundary structure to strong thermal etching-and crystal faceting effects. A simple model is proposed for the path of superconducting currents of high-T-c thin films crossing such a bicrystal boundary. The model yields a 1/tan(theta) dependence of the critical current crossing the bicrystal boundary, which explains very well the reported experimental data. [References: 18]
机译:通过在氧气和超高真空下进行热退火,制备了[100]倾斜(2 X 12度)人造SrTiO3双晶的原子平坦且有序的c(6 X 2)(001)表面,并通过低能电子衍射进行了表征和扫描隧道显微镜。边界的真实空间图像显示,双晶边界不是笔直的,而是沿[100]和[010]晶轴呈锯齿状,并开槽了几个原子步长的深度:到整体。我们将观察到的边界结构归因于强烈的热蚀刻和晶体刻面效应。提出了一个简单的模型,用于高T-c薄膜的超导电流穿过这种双晶边界的路径。该模型产生跨双晶边界的临界电流的1 /tanθ依赖性,这很好地解释了所报道的实验数据。 [参考:18]

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