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dc Josephson effect in metallic single-walled carbon nanotubes

机译:金属单壁碳纳米管中的直流约瑟夫森效应

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The dc Josephson effect is investigated in a single-walled metallic carbon nanotube connected to two superconducting leads. In particular, by using the Luttinger liquid theory, we analyze the effects of the electron-electron interaction on the supercurrent. We find that in the long junction limit the strong electronic correlations of the nanotube, together with its peculiar band structure, induce oscillations in the critical current as a function of the junction length and/or the nanotube electron filling. These oscillations represent a signature of the Luttinger liquid physics of the nanotube, for they are absent if the interaction is vanishing. We show that this effect can be exploited to reverse the sign of the supercurrent, realizing a tunable π-junction.
机译:在连接到两个超导引线的单壁金属碳纳米管中研究了直流约瑟夫森效应。特别是,通过使用Luttinger液体理论,我们分析了电子与电子相互作用对超电流的影响。我们发现,在长的结极限中,纳米管的强电子相关性及其奇特的能带结构,会在临界电流中引起振荡,这是结长和/或纳米管电子填充的函数。这些振荡代表了纳米管的Luttinger液体物理学的特征,因为如果相互作用消失,则将不存在这些振荡。我们表明,可以利用此效应来反转超电流的符号,从而实现可调谐的π结。

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