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Electronic and atomic shell structure in aluminium nanowires

机译:铝纳米线的电子和原子壳结构

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摘要

We report experiments on aluminium nanowires in ultra-high vacuum at room temperature that reveal a periodic spectrum of exceptionally stable structures. Two 'magic' series of stable structures are observed: at low conductance, the formation of stable nanowires is governed by electronic shell effects whereas for larger contacts atomic packing dominates. The crossover between the two regimes is found to be smooth. A detailed comparison of the experimental results to a theoretical stability analysis indicates that, while the main features of the observed electron-shell structure are similar to those of alkali and noble metals, a sequence of extremely stable wires plays a unique role in aluminium. This series appears isolated in conductance histograms and can be attributed to 'superdeformed' non-axisymmetric nanowires.
机译:我们报告了在室温下超高真空下对铝纳米线的实验,揭示了异常稳定结构的周期性光谱。观察到两个“魔术”系列的稳定结构:在低电导率下,稳定的纳米线的形成受电子壳效应支配,而对于较大的接触,原子堆积占主导。发现两个政权之间的过渡是顺利的。实验结果与理论稳定性分析的详细比较表明,尽管观察到的电子-壳结构的主要特征与碱金属和贵金属的特征相似,但一系列极稳定的金属丝在铝中起独特作用。该系列在电导直方图中似乎是孤立的,并且可以归因于“超变形”的非轴对称纳米线。

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