Exact results for the Hubbard model on bipartite lattices in spatial dimensions : Seven theorems from the full [SU(2)SU(2)U(1)]/ symmetry
arXiv:2604.25712 · doi:10.1103/p1sc-sx2d
Abstract
There are few exact results for the Hubbard model on bipartite lattices of spatial dimension . Nevertheless, the Hubbard model with transfer integral and onsite repulsion on bipartite lattices with sites, such as the square, honeycomb, cubic, body-centered cubic, face-centered cubic, and diamond lattices, provides the simplest toy model for describing electronic correlations in many condensed-matter systems and is therefore a quantum problem of considerable physical interest. Seven exact theorems that provide new physical insight into the model are established. Overall, the exact framework based on physical spins and physical -spins for the Hubbard model on bipartite lattices of spatial dimension introduced in this paper offers a robust foundation for future studies of the model, as well as of the condensed-matter materials, such as cuprate superconductors, graphene and graphene-derived systems, and other quantum systems, that it describes.
24 pages, no figures
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