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Superconductivity of nanometer-size Pb islands studied by low-temperature scanning tunneling microscopy

机译:低温扫描隧道显微镜研究纳米级Pb岛的超导性

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Using a low-temperature (1.2 K) scanning tunneling microscopy, the tunneling spectra showing the superconducting gap was taken on Pb island structures, whose dimension ranges from 80 to 300 nm in diameter and 7-12 monolayers in thickness. There is no considerable spatial variation in the tunneling spectra taken on a single island regardless of local geometry (center or peripheral) and thickness of the measured sites. The superconducting gap increases with the island size, and the size dependence is enhanced at higher temperature (3.9 K). The behavior of the gap is explained qualitatively by considering the superconducting fluctuation in the small islands.
机译:使用低温(1.2 K)扫描隧道显微镜,显示超导间隙的隧道光谱是在Pb岛结构上拍摄的,其直径范围为直径80至300 nm,厚度为7-12个单层。无论单个几何形状(中心或外围)和测量位置的厚度如何,在单个岛上拍摄的隧道光谱都没有明显的空间变化。超导间隙随着岛的大小而增加,并且在更高的温度(3.9 K)下,大小依赖性增加。通过考虑小岛上的超导波动来定性地解释间隙的行为。

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