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首页> 外文期刊>Physics Letters, A >Antiresonance effect due to Stone-Wales defect in carbon nanotubes
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Antiresonance effect due to Stone-Wales defect in carbon nanotubes

机译:碳纳米管中Stone-Wales缺陷引起的反共振效应

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The transmission coefficient and the local density of states for different carbon nanotubes with a 5-7-7-5 defect (or Stone-Wales defect) are calculated. The results show that the presence of the Stone-Wales defect induces two remarkable dips in the conductance curve, whose energies lie between the first pair of van-Hove singularities (VHSs), and correspondingly, there are two quasibound states induced by the defect. The conductance dips can be understood as a result of the antiresonance scattering of the incident electrons with these quasibound states. Moreover, it is found that the energies of these quasibound states depend on the 1st VHSs of the CNTs as well as the defect orientation, indicates that the origin of these quasibound states can be ascribed to the nearest energy sub-band splitting by the perturbation of the defect. (C) 2004 Published by Elsevier B.V.
机译:计算具有5-7-7-5缺陷(或Stone-Wales缺陷)的不同碳纳米管的透射系数和状态的局部密度。结果表明,Stone-Wales缺陷的存在会在电导曲线上引起两个明显的下降,其能量位于第一对van-Hove奇异点(VHS)之间,并且相应地,缺陷会导致两个准结合态。可以将电导下降理解为具有这些准结合态的入射电子的反共振散射的结果。此外,发现这些准结合态的能量取决于CNT的第一VHS以及缺陷取向,表明这些准结合态的起源可以归因于最近的能量子带分裂。缺陷。 (C)2004由Elsevier B.V.发布

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