We investigate the competition between charge-density-wave (CDW) states and a Coulomb interaction-driven topological Mott insulator (TMI) in the honeycomb extended Hubbard model. For the spinful model with on-site ($U$) and next-nearest-neighbor ($V_2$) Coulomb interactions at half filling, we find two peculiar six-sublattice charge-density-wave insulating states by using variational Monte Carlo simulations as well as the Hartree-Fock approximation. We observe that conventional ordered states always win with respect to the TMI. The ground state is given in the large-$V_2$ region by a CDW characterized by a 220200 (001122) charge configuration for smaller (larger) $U$, where 0, 1, and 2 denote essentially empty, singly occupied, and doubly occupied sites. Within the 001122-type CDW phase, we find a magnetic transition driven by an emergent coupled-dimer antiferromagnet on an effective square lattice of singly occupied sites. Possible realizations of the found states are discussed.
翻译:我们调查了高压电波州和Coulomb互动热热热热热绝缘器(TMI)之间在蜂窝扩展的Hubbard模型中的竞争情况。对于现场(美元)和下近邻(V_2美元)的圆形模型(V_2美元)半填充,我们发现两个特殊的六子集热热热热热热热热绝热绝缘状态,使用变异的Monte Carlo模拟和Hartree-Fock近似法,我们发现常规定购州总是在TMI上获胜。地面状态由大型V_2美元区域给出,其特征为220200美元(00112222美元)的大小(大)电压配置,其中0美元、1美元和2美元基本上为空置、单人占用和双倍占用地点。在100122型CDW阶段中,我们发现一个磁力转换是由在一座高方形空空地点上发现的州-二甲基抗推磁网驱动的。