paper

Edge-Edge Correlations without Edge-States: -clustering State as Ground State of the Extended Attractive SU(3) Hubbard Chain

arXiv:2411.14724 · doi:10.1103/PhysRevA.111.063307

Abstract

We explore the phase diagram of the extended attractive SU() Hubbard chain with two-body hopping and nearest-neighbor attraction at half-filling. In the large on-site attraction limit, we identify three different phases: phase separation (PS), Tomonaga-Luttinger liquid (TLL), and charge density wave (CDW). Our analysis reveals that the -clustering state, a three-component generalization of the -pairing state, becomes the ground state at the boundary between the PS and TLL phases. On an open chain, this state exhibits an edge-edge correlation, which we call boundary off-diagonal long-range order (bODLRO). Using the density matrix renormalization group (DMRG) method, we numerically study the phase diagram of the model with large but finite on-site interactions and find that the numerical results align with those obtained in the strong coupling limit.

12 pages, 9 figures

Edge-Edge Correlations without Edge-States: $η$-clustering State as Ground State of the Extended Attractive SU(3) Hubbard Chain · wovepaper