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首页> 外文期刊>Physica, B. Condensed Matter >Unit cell dependence of optical matrix elements in tight-binding theory: The case of zigzag graphene nanoribbons
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Unit cell dependence of optical matrix elements in tight-binding theory: The case of zigzag graphene nanoribbons

机译:紧密结合理论中光学矩阵元素的晶胞依赖性:之字形石墨烯纳米带的情况

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In the tight-binding theory, momentum matrix elements (MMEs) needed to calculate the optical properties are normally computed using a formulation based on the gradient of the Hamiltonian in the k space. We demonstrate the inadequacy of this formulation by considering the case of zigzag graphene nanoribbons. We show that one obtains wrong values of MMEs, in violation of the well-known selection rules, if the unit cell chosen in the calculations does not incorporate the symmetries of the bulk. This is in spite of the fact that the band structure is insensitive to the choice of the unit cell. We substantiate our results based on group-theoretic arguments. Our observations will open an avenue for proper formulation of MMEs.
机译:在紧束缚理论中,通常使用基于k空间中哈密顿量梯度的公式来计算计算光学特性所需的动量矩阵元素(MME)。我们通过考虑之字形石墨烯纳米带的情况证明了该配方的不足。我们表明,如果在计算中选择的单位单元未包含体的对称性,则会违反公知的选择规则而获得错误的MME值。尽管带结构对单位晶胞的选择不敏感,这是事实。我们基于小组理论的论据证实了我们的结果。我们的观察将为正确制定MME开辟道路。

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