English

Nontrivial three-sublattice magnetization in the easy-axis spin-1/2 XXZ antiferromagnet on the triangular lattice

Strongly Correlated Electrons 2026-04-17 v1

Abstract

We investigate the ground-state magnetic structure of the spin-1/21/2 XXZ antiferromagnet on the triangular lattice in the easy-axis regime using the density-matrix renormalization group. By applying spiral boundary conditions, we exactly map finite L×LL\times L clusters onto one-dimensional chains while avoiding the spatial anisotropy inherent in cylindrical geometries. From symmetry-broken local magnetization profiles, we extract the three-sublattice moments and track their evolution with anisotropy. At the isotropic point, we obtain a positive sublattice moment of 0.216710.21671, consistent with previous numerical estimates. In the easy-axis regime, the ordered moments remain close to a zero-magnetization three-sublattice structure of the form (2m,m,m)(2m,-m,-m) over a broad range of Δ\Delta. Extrapolation in 1/Δ1/\Delta shows that the positive sublattice moment stays well below the classical saturation value 1/21/2, approaching 0.418730.41873 as Δ\Delta\to\infty, while the magnitude of the negative sublattice moment approaches 0.208320.20832. We further compare the energies of the Y state and the up-down-down state and find that the Y state is favored at zero field. Independent thermodynamic-limit energy calculations, performed without assuming any particular ordered pattern, yield an energy consistent with the Y-state solution. These results show that the easy-axis ground state does not simply cross over to a trivially saturated collinear Ising state, but instead remains a nontrivial three-sublattice ordered state selected from the macroscopically degenerate Ising manifold by quantum fluctuations.

Keywords

Cite

@article{arxiv.2604.14767,
  title  = {Nontrivial three-sublattice magnetization in the easy-axis spin-1/2 XXZ antiferromagnet on the triangular lattice},
  author = {Masahiro Kadosawa and Masaaki Nakamura and Yukinori Ohta and Satoshi Nishimoto},
  journal= {arXiv preprint arXiv:2604.14767},
  year   = {2026}
}

Comments

11 pages, 9 figures, 2 tables