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Coaxial carbon nanotubes as shielded nanowires

机译:同轴碳纳米管作为屏蔽纳米线

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We report transverse polarizabilities of coaxial carbon nanotubes using first principles density functional theory. These results demonstrate a shielding of the inner nanotube from electric fields by the outer nanotube. This study has implications for nanoelectronics, specifically for the possibility of using coaxial nanotubes as nanoelectrical wires. Shielding is predicted to be on the order of 95% by high-level polarizability calculations. This shielding occurs regardless of whether the outer nanotube is metallic or semiconducting. In addition, a series of calculations on coaxial nanotubes where the inner nanotube is not centered show that the shielding still occurs with approximately the same magnitude. These calculations therefore indicate that it would be possible to use a coaxial carbon nanotube as a shielded nanowire. (c) 2006 American Institute of Physics.
机译:我们使用第一原理密度泛函理论报告同轴碳纳米管的横向极化率。这些结果证明了外部纳米管屏蔽了内部纳米管免受电场的影响。这项研究对纳米电子学具有意义,特别是对于使用同轴纳米管作为纳米电线的可能性。通过高级极化率计算,可以预计屏蔽约为95%。不管外部纳米管是金属的还是半导体的,都会发生这种屏蔽。另外,对内部纳米管未居中的同轴纳米管的一系列计算表明,屏蔽仍以大约相同的幅度发生。因此,这些计算表明可以使用同轴碳纳米管作为屏蔽纳米线。 (c)2006年美国物理研究所。

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