Subsystem Ginzburg-Landau and symmetry-protected topological order coexisting on a graph

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초록

We write down and analyze a model demonstrating the co-existence of conventional symmetry-breaking order and symmetry-protected topological (SPT) order in the one-dimensional chain. When appropriately generalized to a model on a graph, the SPT and symmetry-breaking orders exist for each individual loop, or cycle, of the graph. It arises as a consequence of the kind of "global" symmetry operator responsible for SPT and the local-order parameter defining the Ginzburg-Landau order, both of which exist in our model and commute with the Hamiltonian. The anti-commuting character of these two-order parameters is responsible for the ground state degeneracy (GSD). As such operators and their anti-commuting relations can be defined for each independent loop, the GSD grows exponentially with the first Betti number for a graph.

제목
Subsystem Ginzburg-Landau and symmetry-protected topological order coexisting on a graph
저자
Kim, JintaeLee, Hyun-YongHan, Jung Hoon
DOI
10.1103/PhysRevB.103.195124
발행일
2021-05-12
유형
Article
저널명
Physical Review B
103
19