Generalized spin density wave state of the Hubbard model on the C12 and C60 clusters
Abstract
The one-band Hubbard model at half-filling on a truncated tetrahedron (C), and on the C molecule is studied. Within the Hartree-Fock approximation, we find a magnetic-like instability of the `Fermi sea' towards a spin-ordered phase for an intermediate value of the coupling . The ordered phase presents a spin arrangement similar to that of the classical Heisenberg model defined on the same clusters. We study the linear excitations around the Hartree-Fock ground states using the random-phase approximation. On a finite cluster, we expect that these results signal the presence of a between a paramagnetic region and a regime where spin correlations are important. The relationship with the Heisenberg limit (large ) is discussed. Finally, we comment on implications of our results for purely repulsive models of superconductivity in alkali-metal-doped fullerenes.
Keywords
Cite
@article{arxiv.cond-mat/9210011,
title = {Generalized spin density wave state of the Hubbard model on the C12 and C60 clusters},
author = {L. Bergomi and J. P. Blaizot and Th. Jolicoeur and E. Dagotto},
journal= {arXiv preprint arXiv:cond-mat/9210011},
year = {2014}
}
Comments
13 pages, plain TeX, 3figs not included