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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Observing the lateral confinement of surface state electrons in room temperature stable metallic nanostructures
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Observing the lateral confinement of surface state electrons in room temperature stable metallic nanostructures

机译:在室温稳定的金属纳米结构中观察表面态电子的横向限制

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摘要

The lateral confinement of the surface state electrons of Cu(111) has been studied by Scanning Tunnelling Microscopy and Spectroscopy at low temperature. The confining nanostructures are Cu(111) islands embedded in a semiconducting Cu3N(111) film which completely isolate them from each other. The standing wave pattern observed reflect the shape of the edge of the islands, i.e. the positions of the confining potential as long as the islands are larger than twice the Fermi wavelength of the surface electrons. The interference pattern in smaller islands is more complex, reflecting the collective behavior of the electrons. When the width of the islands is, at least in one dimension, smaller than the Fermi wavelength, there is a clear shift in the energy of the bottom of the surface band towards the Fermi level. The depopulation of the surface state produced by lateral confinement might have important consequences with respect to the reactivity of these nanostructures.
机译:Cu(111)的表面态电子的横向约束已通过扫描隧道显微镜和光谱在低温下进行了研究。限制纳米结构是嵌入在半导体Cu3N(111)薄膜中的Cu(111)岛,它们将它们彼此完全隔离。观察到的驻波图反映了岛边缘的形状,即,限制电位的位置,只要这些岛大于表面电子的费米波长的两倍。较小的岛中的干涉图更为复杂,反映了电子的集体行为。当岛的宽度至少在一维上小于费米波长时,表面带的底部能量向费米能级有明显的偏移。关于这些纳米结构的反应性,通过横向限制产生的表面态的减少可能具有重要的后果。

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