English

Multinode quantum spin liquids on the honeycomb lattice

Strongly Correlated Electrons 2020-10-21 v2

Abstract

Recently it was realized that the zigzag magnetic order in Kitaev materials can be stabilized by small negative off-diagonal interactions called the Γ\Gamma' terms. To fully understand the effect of the Γ\Gamma' interactions, we investigate the quantum KK-Γ\Gamma-Γ\Gamma' model on the honeycomb lattice using the variational Monte Carlo method. Two multinode Z2_2 quantum spin liquids (QSLs) are found at Γ>0\Gamma'>0, one of which is the previously found proximate Kitaev spin liquid called the PKSL14 state which shares the same projective symmetry group (PSG) with the Kitaev spin liquid. A remarkable result is that a π\pi-flux state with a distinct PSG appears at larger Γ\Gamma'. The π\pi-flux state is characterized by an enhanced periodic structure in the spinon dispersion in the original Brillouin zone (BZ), which is experimentally observable. Interestingly, two PKSL8 states are competing with the π\pi-flux state and one of them can be stabilized by six-spin ring-exchange interactions. The physical properties of these nodal QSLs are studied by applying magnetic fields and the results depend on the number of cones. Our study infers that there exist a family of zero-flux QSLs that contain 6n+2,nZ6n+2, n\in\mathbb Z Majorana cones and a family of π\pi-flux QSLs containing 4(6n+2)4(6n+2) cones in the original BZ. It provides guidelines for experimental realization of non-Kitaev QSLs in relevant materials.

Keywords

Cite

@article{arxiv.2003.10488,
  title  = {Multinode quantum spin liquids on the honeycomb lattice},
  author = {Jiucai Wang and Qirong Zhao and Xiaoqun Wang and Zheng-Xin Liu},
  journal= {arXiv preprint arXiv:2003.10488},
  year   = {2020}
}

Comments

13 pages, 11 figures, 4 tables

R2 v1 2026-06-23T14:24:30.303Z