English

Chiral spin liquid instability of the Kitaev honeycomb model with crystallographic defects

Strongly Correlated Electrons 2026-05-05 v2 Disordered Systems and Neural Networks Mesoscale and Nanoscale Physics

Abstract

We study the spin-1/2 Kitaev honeycomb gapless spin liquid in the presence of Stone-Wales-type local lattice defects with odd-sided plaquettes. While the clean Kitaev model has no finite-temperature phase transitions, we find that introducing a finite defect density nd104n_d\approx 10^{-4}--10210^{-2} produces a true phase transition with a sizeable Tc2ndT_c \approx 2 n_d in units of the Kitaev exchange. The resulting non-Abelian chiral quantum spin liquid exhibits scalar spin chirality and electron orbital magnetization which peak near lattice defects. This disorder-driven instability relies on an emergent long range ferromagnetic interaction rγr^{-\gamma} (γ2.7\gamma \approx 2.7) between defect chiralities, mediated by the nearly-gapless fermions, with implications for topology generation in Dirac cones with fluctuating mass terms.

Keywords

Cite

@article{arxiv.2511.19409,
  title  = {Chiral spin liquid instability of the Kitaev honeycomb model with crystallographic defects},
  author = {Arnab Seth and Fay Borhani and Itamar Kimchi},
  journal= {arXiv preprint arXiv:2511.19409},
  year   = {2026}
}

Comments

8 pages, 3 figures. v2: Published version