English

Emergent lattices with geometrical frustration in doped extended Hubbard models

Strongly Correlated Electrons 2016-11-15 v2

Abstract

Spontaneous charge ordering occurring in correlated systems may be considered as a possible route to generate effective lattice structures with unconventional couplings. For this purpose we investigate the phase diagram of doped extended Hubbard models on two lattices: (i) the honeycomb lattice with on-site UU and nearest-neighbor VV Coulomb interactions at 3/43/4 filling (n=3/2n=3/2) and (ii) the triangular lattice with on-site UU, nearest-neighbor VV, and next-nearest-neighbor VV' Coulomb interactions at 3/83/8 filling (n=3/4n=3/4). We consider various approaches including mean-field approximations, perturbation theory, and variational Monte Carlo. For the honeycomb case (i), charge order induces an effective triangular lattice at large values of U/tU/t and V/tV/t, where tt is the nearest-neighbor hopping integral. The nearest-neighbor spin exchange interactions on this effective triangular lattice are antiferromagnetic in most of the phase diagram, while they become ferromagnetic when UU is much larger than VV. At U/t(V/t)3U/t\sim (V/t)^3, ferromagnetic and antiferromagnetic exchange interactions nearly cancel out, leading to a system with four-spin ring-exchange interactions. On the other hand, for the triangular case (ii) at large UU and finite VV', we find no charge order for small VV, an effective kagome lattice for intermediate VV, and one-dimensional charge order for large VV. These results indicate that Coulomb interactions induce [case (i)] or enhance [case(ii)] emergent geometrical frustration of the spin degrees of freedom in the system, by forming charge order.

Keywords

Cite

@article{arxiv.1606.06520,
  title  = {Emergent lattices with geometrical frustration in doped extended Hubbard models},
  author = {Ryui Kaneko and Luca F. Tocchio and Roser Valentí and Claudius Gros},
  journal= {arXiv preprint arXiv:1606.06520},
  year   = {2016}
}

Comments

18 pages, 26 figures