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Gap engineering in strained fold-like armchair graphene nanoribbons

机译:紧张折叠式扶手椅石墨烯纳米谷板的差距工程

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摘要

Strained fold-like deformations on armchair graphene nanoribbons (AGNRs) can be properly engineered in experimental setups, and could lead to a controlling tool for gaps and transport properties. Here, we analyze the electronic properties of folded AGNRs relating to the electronic responses and the mechanical deformation. An important and universal parameter for the gap engineering is the ribbon percent-width variation, i.e., the difference between the deformed and undeformed ribbon widths. AGNRs band gap can be tuned mechanically in a well-defined bounded range of energy values, eventually leading to a metallic system. This characteristic provides a controllable degree of freedom that allows manipulation of electronic currents. We show that the numerical results are analytically predicted by solving the Dirac equation for the strained system.
机译:在扶手椅石墨烯纳米杆(AGNRS)上的紧张折叠变形可以在实验设置中适当地设计,并且可以导致用于间隙和运输性能的控制工具。 在这里,我们分析了与电子响应和机械变形有关的折叠AGNR的电子特性。 间隙工程的一个重要和通用参数是色带百分比宽度变化,即变形和未变形带宽之间的差异。 AGNRS带隙可以在明确的限定的能量值范围内机械地调整,最终导致金属系统。 该特性提供了可控制的自由度,允许操纵电子电流。 我们表明,通过求解紧张系统的DIRAC方程来分析数值结果。

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  • 来源
    《Physical review, B》 |2017年第4期|共7页
  • 作者单位

    Univ Fed Fluminense Inst Fis Ave Litoranea Sn BR-24210340 Rio De Janeiro Brazil;

    Univ Fed Fluminense Inst Fis Ave Litoranea Sn BR-24210340 Rio De Janeiro Brazil;

    Univ Estado Rio de Janeiro Inst Politecn BR-28625570 Rio De Janeiro Brazil;

    Univ Fed Fluminense Inst Fis Ave Litoranea Sn BR-24210340 Rio De Janeiro Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
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