paper

On-Site Repulsion as the Source of Pairing in Carbon Nanotubes and Intercalated Graphite

arXiv:cond-mat/0212122 · doi:10.1140/epjb/e2002-00367-6

Abstract

We show that different non-conventional superconductors have one fundamental feature in common: pair eigenstates of the Hamiltonian are repulsion-free, the W=0 pairs. In extended Hubbard models, pairing can occur for resonable parameter values. For nanotubes the binding energy of the pair depends strongly on the filling and decreases towards a reduced but nonzero value for the graphite sheet .

4 pages, 2 figures