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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Lattice vibrations of armchair carbon nanotubes: phonons, soliton deformations and lattice discreteness effects
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Lattice vibrations of armchair carbon nanotubes: phonons, soliton deformations and lattice discreteness effects

机译:扶手椅碳纳米管的晶格振动:声子,孤子变形和晶格离散效应

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摘要

Small and large-amplitude elastic deformations of the armchair structure of sin-le-walled carbon nanotubes are investigated with emphasis on the cylindrical geometry. As starting model, we consider a discrete one-dimensional lattice of atoms interacting via a Lennard-Jones type two-body potential. lit an expansion scheme using cylindrical coordinates where radial displacements are assumed negligible compared to the angular motions, a sine-lattice Hamiltonian is derived. lit the limit, of small-amplitude angular displacements, the dispersion spectrum of acoustic phonons is derived and the associate characteristic frequency is given as a function of parameters of the model. In the large-amplitude regime, lattice vibrations give rise to kink-type deformations which move undergoing lattice dispersion and lattice discreteness effects. The dispersion law of the kink motion is obtained and shown to lower the effect of lattice discreteness. giving rise to a vanishing Peierls stress for kink sizes of the order of a few lattice spacings. Implications of the coupling of two armchair structures on the stability of vibrational modes of an individual armchair nanotube are also discussed. A gap of forbidden modes is predicted in the phonon spectrum while the energy needed to create a kink deformation in individual nanotubes is shifted in the presence of a wall-to-wall interaction.
机译:研究了单壁碳纳米管的扶手椅结构的小振幅和大振幅弹性变形,重点是圆柱几何形状。作为起始模型,我们考虑通过Lennard-Jones型两体势相互作用的原子的离散一维晶格。提出了一种使用圆柱坐标的展开方案,其中假定与角运动相比径向位移可以忽略不计,得出了正弦晶格哈密顿量。在小振幅角位移的极限下,推导了声子的色散谱,并给出了相关特征频率作为模型参数的函数。在大振幅状态下,晶格振动会引起扭结型变形,并会发生晶格分散和晶格离散效应。获得了扭结运动的色散定律,并显示出它降低了晶格离散的影响。对于几格间距量级的扭结尺寸,Peierls应力将消失。还讨论了两个扶手椅结构的耦合对单个扶手椅纳米管振动模式稳定性的影响。在声子谱中预测了禁忌模式的间隙,而在存在壁对壁相互作用的情况下,在单个纳米管中产生扭结变形所需的能量发生了转移。

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