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Helicity dependent selection rules and correlated electron transport properties of double-walled carbon nanotubes

机译:螺旋依赖性选择规则和双壁碳纳米管的相关电子传输性能

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摘要

We analytically demonstrate helicity determined selection rules for intershell tunneling in double-walled nanotubes with commensurate (c-DWNTs) and incommensurate (i-DWNTs) shells. For i-DWNTs the coupling is negligible between lowest energy subbands, but it becomes important as the higher subbands become populated. In turn the elastic mean free path of i-DWNTs is reduced for increasing energy, with additional suppression at subband onsets. At low energies, a Luttinger liquid theory for DWNTs with metallic shells is derived. Interaction effects are more pronounced in i-DWNTs.
机译:我们分析了用掺合(C-DWNT)和中非甲酸(I-DWNT)壳的双壁纳米管中的Intershell隧穿的螺旋确定选择规则。对于I-DWNTS,耦合在最低能量子带之间可忽略不计,但随着较高的子带填充,它变得重要。反过来,减少了I-DWNT的弹性平均自由路径,以增加能量,在子带上的船舶上具有额外的抑制。在低能量下,推导出具有金属壳的DWNT的Luttinger液体理论。 I-DWNT中的交互效果更加明显。

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