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arxiv: cond-mat/0703142 · v1 · submitted 2007-03-06 · ❄️ cond-mat.supr-con · cond-mat.str-el

Influence of dimensionality on superconductivity in carbon nanotubes

classification ❄️ cond-mat.supr-con cond-mat.str-el
keywords wallcarbonelectroniclong-rangenanotubespartrepulsionscreening
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We investigate the electronic instabilities in carbon nanotubes (CNs), looking for the break-down of the one dimensional Luttinger liquid regime due to the strong screening of the long-range part of the Coulomb repulsion. We show that such a breakdown is realized both in ultra-small single wall CNs and multi wall CNs, while a purely electronic mechanism could explain the superconductivity (SC) observed recently in ultra-small (diameter $ \sim 0.4 nm$) single wall CNs ($T_c\sim 15 ^{o}K$) and entirely end-bonded multi-walled ones ($T_c\sim 12 ^{o}K$). We show that both the doping and the screening of long-range part of the electron-electron repulsion, needed to allow the SC phase, are related to the intrinsically 3D nature of the environment where the CNs operate.

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