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Correlated transport and non-Fermi-liquid behavior in single-wall carbon nanotubes
Authors:R Egger  AO Gogolin
Institution:Fakult?t für Physik, Albert-Ludwigs-Universit?t, Hermann-Herder-Stra?e 3, 79104, Freiburg, Germany
Department of Mathematics, Imperial College, 180 Queen's Gate, SW7 2BZ, London, UK
Abstract:We derive the effective low-energy theory for single-wall carbon nanotubes including the Coulomb interactions among electrons. The generic model found here consists of two spin-fermion chains which are coupled by the interaction. We analyze the theory using bosonization, renormalization-group techniques, and Majorana refermionization. Several experimentally relevant consequences of the breakdown of Fermi liquid theory observed here are discussed in detail, e.g., magnetic instabilities, anomalous conductance laws, and impurity screening profiles. Received: 12 December 1997 / Revised: 9 March 1998 / Accepted: 12 March 1998
Keywords:PACS  71  10  Pm Fermions in reduced dimensions (anyons  composite fermions  Luttinger liquid  etc  ) - 71  20  Tx Fullerenes and          related materials  intercalation compounds - 72  80  Rj Fullerenes and related materials
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