Hubbard physics in the symmetric half-filled periodic Anderson-Hubbard model
Strongly Correlated Electrons
2015-06-05 v1
Abstract
Two very different methods -- exact diagonalization on finite chains and a variational method -- are used to study the possibility of a metal-insulator transition in the symmetric half-filled periodic Anderson-Hubbard model. With this aim we calculate the density of doubly occupied sites as a function of various parameters. In the absence of on-site Coulomb interaction () between electrons, the two methods yield similar results. The double occupancy of levels remains always finite just as in the one-dimensional Hubbard model. Exact diagonalization on finite chains gives the same result for finite , while the Gutzwiller method leads to a Brinkman-Rice transition at a critical value (), which depends on and .
Keywords
Cite
@article{arxiv.1207.0381,
title = {Hubbard physics in the symmetric half-filled periodic Anderson-Hubbard model},
author = {I. Hagymasi and K. Itai and J. Solyom},
journal= {arXiv preprint arXiv:1207.0381},
year = {2015}
}
Comments
10 pages, 5 figures