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Zigzag graphene nanoribbon edge reconstruction with Stone-Wales defects

机译:带有Stone-Wales缺陷的锯齿形石墨烯纳米带边缘重建

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摘要

In this paper, we study zigzag graphene nanoribbons with edges reconstructed with Stone-Wales defects, by means of an empirical (first-neighbor) tight-binding method, with parameters determined by ab initio calculations of very narrow ribbons. We explore the characteristics of the electronic band structure with a focus on the nature of edge states. Edge reconstruction allows the appearance of a new type of edge states. They are dispersive, with nonzero amplitudes in both sublattices; furthermore, the amplitudes have two components that decrease with different decay lengths with the distance from the edge; at the Dirac points one of these lengths diverges, whereas the other remains finite, of the order of the lattice parameter. We trace this curious effect to the doubling of the unit cell along the edge, brought about by the edge reconstruction. In the presence of a magnetic field, the zero-energy Landau level is no longer degenerate with edge states as in the case of the pristine zigzag ribbon.
机译:在本文中,我们通过经验(第一个邻居)紧密结合方法研究了具有用Stone-Wales缺陷重建的边缘的锯齿形石墨烯纳米带,其参数由非常窄的碳带从头算来确定。我们重点关注边缘态的性质,探索电子能带结构的特征。边缘重建允许出现一种新型的边缘状态。它们是分散的,两个子格中的振幅都不为零。此外,振幅具有两个分量,它们随着距边缘的距离而随着衰减长度的不同而减小。在狄拉克点上,这些长度中的一个发散,而另一个长度保持有限,处于晶格参数的数量级。我们将这种奇怪的效果追溯到边缘重建带来的沿晶胞倍增的效果。在存在磁场的情况下,零能量的朗道能级不再像原始之字形带那样在边缘状态下退化。

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  • 来源
    《Physical review》 |2011年第15期|p.155435.1-155435.15|共15页
  • 作者单位

    CFP and Departamento de Fisica, Faculdade de Ciencias, Universidade do Porto, P-4169-007 Porto, Portugal;

    Departamento de Fisica and Centro de Fisica, Universidade do Minho, P-4710-057 Braga, Portugal;

    Departamento de Fisica and Centro de Fisica, Universidade do Minho, P-4710-057 Braga, Portugal;

    Departamento de Fisica and Centro de Fisica, Universidade do Minho, P-4710-057 Braga, Portugal;

    CFP and Departamento de Fisica, Faculdade de Ciencias, Universidade do Porto, P-4169-007 Porto, Portugal;

    Departamento de Fisica and Centro de Fisica, Universidade do Minho, P-4710-057 Braga, Portugal,Graphene Research Centre and Department of Physics, National University of Singapore, 2 Science Drive 3, Singapore 117542;

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