Incremental expansions for Hubbard-Peierls systems
arXiv:cond-mat/9710112 · doi:10.1134/1.567791
Abstract
The ground state energies of infinite half-filled Hubbard-Peierls chains are investigated combining incremental expansion with exact diagonalization of finite chain segments. The ground state energy of equidistant infinite Hubbard (Heisenberg) chains is calculated with a relative error of less than for all values of using diagonalizations of 12-site (20-site) chain segm ents. For dimerized chains the dimerization order parameter as a function of the onsite repulsion interaction has a maximum at nonzero values of , if the electron-phonon coupling is lower than a critical value . The critical value is found with high accuracy to be . For smaller values of the position of the maximum of is approximately , and rapidly tends to zero as approaches from below. We show how our method can be applied to calculate breathers for the problem of phonon dynamics in Hubbard-Peierls systems.
4 Pages, 3 Figures, REVTEX