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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Low energy electrons focused by the image charge interaction in carbon nanotubes
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Low energy electrons focused by the image charge interaction in carbon nanotubes

机译:低能电子通过碳纳米管中的图像电荷相互作用聚焦

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摘要

Electrons with energy in the range of a few eV are strongly affected by the interaction with the polarization charges they induce on a surface. This report shows how this effect is relevant for the data analysis of inverse photoemission spectroscopy (IPS) from carbon nano-tube (CNT) arrays. IPS from CNTs exhibit two main resonances, located around 2.5 eV and 12.5 eV above the Fermi level. The intensity of the first resonance is dependent on the average tube diameter and the second one has a distinctive spectral shape, which is related to the graphitization level of the CNT external walls. In order to analyze the origin of these resonances, a phenomenological reconstruction of an IPS spectrum from a CNT collection was performed. This reconstruction successfully reproduces the spectral shape of the 12.5 eV resonance. However, the intensity is lower than the actual measurements in the initial energy range of the spectrum. The analysis of these results suggests that the additional intensity required to reproduce the experimental data, has its origin in an electronic focusing mechanism, induced by the CNT image charge potential. This effect is significant for low energy electrons and small diameter tubes,
机译:能量在几个eV范围内的电子会受到与其在表面上诱导的极化电荷相互作用的强烈影响。该报告显示了这种效应与碳纳米管(CNT)阵列的反向光发射光谱(IPS)数据分析之间的关系。 CNT的IPS表现出两个主要的共振,分别位于费米能级附近2.5 eV和12.5 eV左右。第一次共振的强度取决于平均管直径,第二次共振具有独特的光谱形状,这与CNT外壁的石墨化程度有关。为了分析这些共振的起源,从碳纳米管收集物中进行了IPS光谱的现象学重建。这种重建成功地重现了12.5 eV共振的频谱形状。但是,强度低于光谱的初始能量范围内的实际测量值。对这些结果的分析表明,重现实验数据所需的额外强度是由CNT图像电荷电位引起的电子聚焦机制引起的。对于低能电子和小直径电子管,此效果非常重要,

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