English

Stability and fine structure of symmetry-enriched quantum criticality in a spin ladder triangular model

Strongly Correlated Electrons 2023-06-21 v1

Abstract

In this letter, we propose and study a ladder triangular cluster model which possesses a Z2\mathbb{Z}_2 symmetry and an anti-unitary Z2T\mathbb{Z}^{\mathbb{T}}_2 symmetry generated by the spin-flip and complex conjugation, respectively. The phase diagram of the model hosts a critical line between a spontaneous symmetry breaking phase and a symmetry protected topological phase. Along the critical line, one endpoint exhibits symmetry-enriched Ashkin-Teller universality (SEATU), while other critical points fall into the symmetry-enriched Ising universality (SEIU). Both universality classes accommodate symmetry protected degenerate edge modes under open boundary conditions. This degeneracy can be lifted with a gap opening when proper perturbation is applied to the boundary. With system size (LL) increasing, at the point of SEATU, the gap closes following L1L^{-1}. In contrast, for the critical points of SEIU apart from a point with the known gap closing as L14L^{-14}, other points surprisingly show exponentially gap closing. The coexistence of different gap closing behaviors for critical points of the same symmetry-enriched universality goes beyond the the usual understanding of symmetry-enriched universality class, implying a fine and rich structure of phase transition and universality class.

Keywords

Cite

@article{arxiv.2306.11446,
  title  = {Stability and fine structure of symmetry-enriched quantum criticality in a spin ladder triangular model},
  author = {Xiao Wang and Linhao Li and Jianda Wu},
  journal= {arXiv preprint arXiv:2306.11446},
  year   = {2023}
}

Comments

7 pages, 5 figures