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Electronic structure simulations of carbon nanotubes

机译:碳纳米管的电子结构模拟

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摘要

Recently, Iijima et al. (Nature, 363 (1993) 603) and Bethune et al. (Naure, 363 (1993) 605) have found carbon-arc conditions that yield extended single-shell nanometer-diameter carbon fibers. The individual hollow concentric graphitic tubules which comprise these fibers can be visualized as constructed from rolled-up single sheets of graphite. We have examined both the electronic and structural properties of these materials using a first-principles, self-consistent, all-electron Gaussian-orbital-based local-density functional (LDF) approach. As part of these studies, we have calcualted the optical absorption spectra of several representative nanotubes using an Ehrenreich-Cohen perturbation-theory approach using the LDF electronic structure results. We discuss these reuslts in the light of recent experimental results for electron energy-loss spectra of these novel materials.
机译:最近,饭岛等。 (Nature,363(1993)603)和Bethune等人。 (Naure,363(1993)605)发现了碳弧条件,其产生了延伸的单壳纳米直径碳纤维。包含这些纤维的单个中空同心石墨管可以从单层石墨片上看得到。我们已经使用第一性原理,自洽,全电子高斯轨道基局部密度泛函(LDF)方法检查了这些材料的电子和结构特性。作为这些研究的一部分,我们使用Ehrenreich-Cohen扰动理论方法并利用LDF电子结构结果计算了几种代表性纳米管的光吸收光谱。我们根据这些新型材料的电子能量损失谱的最新实验结果来讨论这些重复利用。

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