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Why edge effects are important on the intrinsic loss mechanisms of graphene nanoresonators

机译:为什么边缘效应对石墨烯纳米谐振器的固有损耗机制很重要

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摘要

Molecular dynamics simulations are performed to investigate edge effects on the quality factor of graphene nanoresonators with different edge configurations and of various sizes. If the periodic boundary condition is applied, very high quality factors (3×10~5) are obtained for all kinds of graphene nanoresonators. However, if the free boundary condition is applied, quality factors will be greatly reduced by two effects resulting from free edges: the imaginary edge vibration effect and the artificial effect. Imaginary edge vibrations will flip between a pair of doubly degenerate warping states during the mechanical oscillation of nanoresonators. The flipping process breaks the coherence of the mechanical oscillation of the nanoresonator, which is the dominant mechanism for extremely low quality factors. There is an artificial effect if the mechanical oscillation of the graphene nanoresonator is actuated according to an artificial vibration (non-natural vibration of the system), which slightly reduces the quality factor. The artificial effect can be eliminated by actuating the mechanical oscillation according to a natural vibration of the nanoresonator. Our simulations provide an explanation for the recent experiment, where the measured quality factor is low and varies between identical samples with free edges.
机译:进行分子动力学模拟以研究边缘对石墨烯纳米谐振器质量因子的影响,所述石墨烯纳米谐振器具有不同的边缘构型和不同的尺寸。如果应用周期性边界条件,则对于各种石墨烯纳米谐振器都可以获得非常高的品质因数(3×10〜5)。但是,如果应用自由边界条件,则由于自由边缘产生的两个影响将大大降低品质因数:虚边振动影响和人工影响。在纳米谐振器的机械振荡过程中,假想的边缘振动将在一对双简并的翘曲状态之间翻转。翻转过程破坏了纳米谐振器机械振荡的相干性,这是极低质量因数的主要机制。如果根据人工振动(系统的非自然振动)来激活石墨烯纳米谐振器的机械振荡,则会产生人工效应,这会稍微降低品质因数。可以通过根据纳米谐振器的固有振动来启动机械振荡来消除人为效应。我们的模拟为最近的实验提供了解释,在该实验中,测得的品质因数很低,并且在具有自由边缘的相同样本之间变化。

著录项

  • 来源
    《Journal of Applied Physics》 |2012年第5期|p.054314.1-054314.9|共9页
  • 作者

    Jin-Wu Jiang; Jian-Sheng Wang;

  • 作者单位

    Institute of Structural Mechanics, Bauhaus University,Marienstrae 15, Weimar 99423, Germany. Electronic;

    Department of Physics and Centre for Computational Science and Engineering, National University of Singapore, Singapore 117542, Republic of Singapore;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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