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Electronic and transport properties of a carbon-atom chain in the core of semiconducting carbon nanotubes

机译:半导体碳纳米管核心中碳原子链的电子和传输性质

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Using the tight-binding calculations, we have studied electronic and transport properties of the semiconducting single-walled carbon nanotubes (SSWNTs) doped by a chain of carbon-atoms, which can be well controlled by density of the encapsulated carbon atoms. When it is lower, weak coupling between the chain atoms and the tube produces flat bands near the Fermi level, which means a great possibility of superconductivity and ferromagnetism for the combined system. The weak coupling also leads to a significant conductance at the Fermi level, which is contributed by both of the tube and the encapsulated carbon-atom chain. lncreasing density of the chain carbon atoms, the flat bands near the Fermi level disappear, and the current may be carried only by the carbon-atom chain, thus making the system become an ideal one-dimensional quantum wire with its conducting chain enclosed by a SWNT insulator. (C) 2003 Published by Elsevier B.V. [References: 35]
机译:使用紧密结合的计算,我们研究了由碳原子链掺杂的半导体单壁碳纳米管(SSWNT)的电子和传输性质,可以通过封装的碳原子的密度很好地控制它。较低时,链原子与管之间的弱耦合会在费米能级附近产生平坦带,这意味着组合系统具有超导性和铁磁性的可能性很大。弱耦合还会在费米能级上产生很大的电导,这是由管和封装的碳原子链共同作用的结果。随着碳原子链密度的增加,费米能级附近的平带消失,电​​流只能由碳原子链携带,从而使该系统成为理想的一维量子线,其导电链被碳原子包围。 SWNT绝缘子。 (C)2003年,Elsevier B.V.出版[参考:35]

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