npj Quantum Materials (Feb 2024)

Possible chiral spin liquid state in the S = 1/2 kagome Heisenberg model

  • Rong-Yang Sun,
  • Hui-Ke Jin,
  • Hong-Hao Tu,
  • Yi Zhou

DOI
https://doi.org/10.1038/s41535-024-00627-5
Journal volume & issue
Vol. 9, no. 1
pp. 1 – 7

Abstract

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Abstract The nature of the ground state for the S = 1/2 Kagome Heisenberg antiferromagnet (KHAF) has been elusive. We revisit this challenging problem and provide numerical evidence that its ground state is a chiral spin liquid. Combining the density matrix renormalization group method with analytical analyses, we demonstrate that the previously observed chiral spin liquid phase in the KHAF with longer-range couplings is stable in a broader region of the phase diagram. We characterize the nature of the ground state by computing energy derivatives, revealing the ground-state degeneracy arising from the spontaneous breaking of the time-reversal symmetry, and targeting the semion sector. We further investigate the phase diagram in the vicinity of the KHAF and observe a $$\sqrt{3}\times \sqrt{3}$$ 3 × 3 magnetically ordered phase and two valence-bond crystal phases.