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Single-mode phonon transmission in symmetry-broken carbon nanotubes: Role of phonon symmetries

机译:对称性破坏的碳纳米管中的单模声子传输:声子对称性的作用

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摘要

We investigate the single-mode phonon transmission in symmetry-broken carbon nanotubes with the Stone-Wales defect using a mode-matching method. To gain an insight into the features of the transmission, the symmetry properties of phonons are analyzed within the line group symmetry theory for single-walled carbon nanotubes. Our results show that the transmission for acoustic phonons with low group velocity is heavily suppressed, and the long-wave optical phonons near the Γ point are strongly scattered by defects. We clarify that this reduction in transmission for phonons with small group velocity is a universal behavior resulting from the broken translational invariance. Furthermore, fine structures of dips in the transmission are observed for some phonon modes, depending on the unmatched symmetry operations between the specific phonon mode and the defect. Our findings reveal that heat generation in experiments for the defective nanotubes may be contributed largely from the phonons with low group velocity because of their low transmissions. We propose the mode-dependent transmission for the single-mode phonon be utilized to identify the different phonon modes through the features for the fine structures of the transmission in experiments.
机译:我们使用模式匹配方法研究在Stone-Wales缺陷对称破碎的碳纳米管中的单模声子传输。为了深入了解传输的特征,在单壁碳纳米管的线组对称性理论中分析了声子的对称性。我们的结果表明,低群声子的声子的传输被严重抑制,并且Γ点附近的长波声子被缺陷强烈散射。我们澄清说,对于小群速度的声子,传输的这种减少是由于平移不变性破裂而引起的普遍现象。此外,根据特定声子模式与缺陷之间不匹配的对称操作,对于某些声子模式,可以观察到透射中的垂度的精细结构。我们的发现表明,有缺陷的纳米管在实验中产生的热量可能主要是由于声子的低透射率而使其具有低的群速度。我们提出用于单模声子的依赖于模式的传输可通过实验中传输的精细结构的特征来识别不同的声子模式。

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  • 来源
    《Extremes》 |2009年第6期|392-399|共8页
  • 作者

    Jian Wang; Jian-Sheng Wang;

  • 作者单位

    College of Physical Science and Technology, Yangzhou University, Yangzhou 225002, People's Republic of China;

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

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