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Edge-state signature in optical absorption of nanographenes: Tight-binding method and time-dependent density functional theory calculations

机译:纳米石墨烯光吸收中的边缘态特征:紧束缚法和时变密度泛函理论计算

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摘要

The optical absorption of triangular nanographenes with well-defined edge structure, that is, zigzag- and armchair-type edges, is studied using the tight-binding method within the Hueckel approximation. The absorption spectra of zigzag triangular nanographenes exhibit rich peak structures originating from the excitations associated with the edge states, while those of armchair ones do not. The main feature in the absorption spectra is reproduced by time-dependent density functional theory calculations within a real-time scheme. By varying the size of the nanographenes, we elucidate the role of the edge states in the optical absorption, which becomes conspicuous when the graphene size is on a nanometer scale. Our finding in this paper provides a way to capture the edge-state signature by optical experiments with visible light.
机译:使用Hueckel近似中的紧密结合方法研究了具有明确边缘结构的三角形纳米石墨烯(即之字形和扶手椅型边缘)的光吸收。之字形三角形纳米石墨烯的吸收光谱显示出丰富的峰结构,这些峰结构源自与边缘态相关的激发,而扶手椅形的吸收光谱则没有。吸收光谱的主要特征是通过实时方案中与时间有关的密度泛函理论计算得出的。通过改变纳米石墨烯的尺寸,我们阐明了边缘态在光吸收中的作用,当石墨烯的尺寸为纳米级时,这种作用变得尤为明显。我们在本文中的发现提供了一种通过可见光光学实验捕获边缘状态特征的方法。

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