Construction of symmetry in a Hubbard-type model
arXiv:2010.14126
Abstract
As the smallest exceptional Lie group and the automorphism group of the non-associative algebra octonions, is often employed for describing exotic symmetry structures. We construct symmetry in a self-dual Hubbard-type model with 4-component fermions in a bipartite lattice, which lies in the intersection of two algebras connected by the structure constants of octonions. Depending on the representations of the order parameters, the symmetry can be spontaneously broken into either an one associated with an sphere Goldstone manifold, or, into with a Grassmannian Goldstone manifold. In the quantum disordered states, quantum fluctuations generate the effective and gauge theories for low energy fermions.
5+7 pages, 1+2 figures