Electronic orders on the kagome lattice at the lower Van Hove filling
arXiv:2402.10455 · doi:10.1103/PhysRevB.109.075130
Abstract
We study the electronic orders at the lower van Hove filling in the kagome lattice. In the weak limit of the Hubbard interaction versus the hopping parameter , we find that the system develops itinerant ferromagnetism; In the intermediate range of , we find the system develops noncollinear magnetic order with orthogonal spin moments on nearest-neighbor bonds. This is in fact a Chern insulator supporting quantized anomalous Hall conductance; In the strong limit, we map the Hubbard model to the - model with . For moderate values of we recover the noncollinear magnetic order obtained in the Hubbard model. However, in the limit of (or ) we find the ferromagnetic order revives. The results are obtained by combination of the random-phase approximation and functional renormalization group in the weak to moderate limit of , and the variational quantum Monte Carlo for the - model in the strong coupling limit. The phase diagram is distinctly different to that at the higher van Hove filling studied earlier, and the difference can be attributed to the lack of particle-hole symmetry in the band structure with respect to the Dirac point.
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