English

Spiral ferrimagnetic phases in the two-dimensional Hubbard model

Strongly Correlated Electrons 2015-05-05 v1

Abstract

We address the possibility of spiral ferrimagnetic phases in the mean-field phase diagram of the two-dimensional (2D) Hubbard model. For intermediate values of the interaction UU (6U/t116 \lesssim U/t \lesssim 11) and doping nn, a spiral ferrimagnetic phase is the most stable phase in the (n,U)(n,U) phase diagram. Higher values of UU lead to a non-spiral ferrimagnetic phase. If phase separation is allowed and the chemical potential μ\mu replaces the doping nn as the independent variable, the (μ,U)(\mu,U) phase diagram displays, in a considerable region, a spiral (for 6U/t116 \lesssim U/t \lesssim 11) and non-spiral (for higher values of UU) ferrimagnetic phase with fixed particle density, n=0.5n=0.5, reflecting the opening of an energy gap in the mean-field quasi-particle bands.

Keywords

Cite

@article{arxiv.1505.00583,
  title  = {Spiral ferrimagnetic phases in the two-dimensional Hubbard model},
  author = {J. D. Gouveia and R. G. Dias},
  journal= {arXiv preprint arXiv:1505.00583},
  year   = {2015}
}

Comments

8 pages, 3 figures