Analytical solution of a Hubbard model extended by nearest neighbour Coulomb and exchange interaction on a triangle and tetrahedron
arXiv:cond-mat/0701060 · doi:10.1002/andp.200710281
Abstract
The Hubbard model extended by either nearest-neighbour Coulomb correlation and/or nearest neighbour Heisenberg exchange is solved analytically for a triangle and tetrahedron. All eigenvalues and eigenvectors are given as functions of the model parameters in a closed form. The groundstate crossings and degeneracies are discussed both for the canonical and grand-canonical energy levels. The grand canonical potential and the electron occupation of the related cluster gases were calculated for arbitrary values (attractive and repulsive) of the three interaction constants. In the pure Hubbard model we found various steps in the electron occupation higher than one. It is shown that the various degeneracies of the grand-canonical energy levels are partially lifted by an antiferromagnetic exchange interaction, whereas a moderate ferromagnetic exchange modifies only slightly the results of the pure Hubbard model. A repulsive nn Coulomb correlation lifts these degeneracies completely. The relation of the cluster gas results to extended systems is discussed.
115 pages, 20 figures. If you do not intend to work with the eigenvalues and eigenvectors do NOT print the appendices (92 pages), instead print pages 1-11 (article) and 103-115 (figures)
References in corpus (1)
Cited by in corpus (6)
- Quantum frustration in organic Mott insulators: from spin liquids to unconventional superconductors
- Electron coherent and incoherent pairing instabilities in inhomogeneous bipartite and nonbipartite nanoclusters
- Hubbard pair cluster in the external fields. Studies of the chemical potential
- and molecules with an ab initio optimization of wave functions in correlated state: Electron-proton couplings and intermolecular microscopic parameters
- Magnetocaloric and electrocaloric properties of the Hubbard pair cluster
- Hubbard pair cluster with elastic interactions. Studies of thermal expansion, magnetostriction and electrostriction