The MFA ground states for the extended Bose-Hubbard model with a three-body constraint
Abstract
We address the intensively studied extended bosonic Hubbard model (EBHM) with truncation of the on-site Hilbert space to the three lowest occupation states n=0,1,2 in frames of the S=1 pseudospin formalism. Similar model was recently proposed to describe the charge degree of freedom in a model high-Tc cuprate with the on-site Hilbert space reduced to the three effective valence centers, nominally Cu^{1+;2+;3+} . With small corrections the model becomes equivalent to a strongly anisotropic S=1 quantum magnet in an external magnetic field. We have applied a generalized mean-field approach and quantum Monte-Carlo technique for the model 2D S=1 system with a two-particle transport to find the ground state phase with its evolution under deviation from half-filling.
Keywords
Cite
@article{arxiv.1902.05986,
title = {The MFA ground states for the extended Bose-Hubbard model with a three-body constraint},
author = {Yu. D. Panov and A. S. Moskvin and E. V. Vasinovich and V. V. Konev},
journal= {arXiv preprint arXiv:1902.05986},
year = {2019}
}
Comments
9 pages, 3 figures