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Magneto-optical selection rules of curved graphene nanoribbons and carbon nanotubes

机译:弯曲石墨烯纳米带和碳纳米管的磁光选择规则

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摘要

We derive the generalized magneto-absorption spectra for curved graphene nanoribbons and carbon nanotubes by using the Peierls tight-binding model. The main spectral characteristics and the optical selection rules result from the cooperative or competitive relationships between the geometric structure and a magnetic field. In curved ribbons, the dominant selection rule remains unchanged during the variation of the curvature. When the arc angle increases, the prominent peaks are split, with some even vanishing as the angle exceeds a critical value. In carbon nanotubes, the angular-momentum coupling induces extra selection rules, of which more are revealed due to the increase of either (both) of the factors: tube diameter and field strength. Particularly once the two factors exceed certain critical values, the optical spectra could reflect the quasi-Landau-level structures. The identifying features of the spectra provide insight into optical excitations for curved systems with either open or closed boundary condition.
机译:通过使用Peierls紧密结合模型,我们得出了弯曲石墨烯纳米带和碳纳米管的广义磁吸收光谱。主要光谱特征和光学选择规则是由几何结构和磁场之间的协作或竞争关系产生的。在弯曲的色带中,主要选择规则在曲率变化期间保持不变。当电弧角增加时,突出的峰会分裂,随着角度超过临界值,一些峰甚至消失。在碳纳米管中,角动量耦合会引起额外的选择规则,这是由于以下两个因素(管直径和场强)的增加而揭示的。特别地,一旦这两个因素超过一定的临界值,光谱就可以反映准兰道级的结构。光谱的识别特征提供了对具有开放或封闭边界条件的弯曲系统的光激发的深入了解。

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