English

Dimensional reduction in quantum spin-1/2 system on a 1/7-depleted triangular lattice

Strongly Correlated Electrons 2021-12-14 v2

Abstract

We study the magnetism of a quantum spin-1/2 antiferromagnet on a maple-leaf lattice which is obtained by regularly depleting 1/7 of the sites of a triangular lattice. Although the interactions are set to be spatially uniform, the ground state shows a stripe Neel order and the temperature dependence of magnetic susceptibility follows that of the one-dimensional XXZ model with a finite spin gap. We examine the nature of frustration by mapping the low energy degenerate manifold of states to the fully packed loop-string model on a dual cluster-depleted honeycomb lattice, finding that the order-by-disorder due to quantum fluctuation characteristic of highly frustrated magnets is responsible for the emergent stripes. The excited magnons split into two spinons and propagate in the one-dimensional direction along the stripe which is reminiscent of the XXZ or Ising model in one dimension. Unlike most of the previously studied dimensional reduction effects, our case is purely spontaneous as the interactions of the Hamiltonian retains a spatially isotropic two-dimensional structure.

Keywords

Cite

@article{arxiv.2110.06491,
  title  = {Dimensional reduction in quantum spin-1/2 system on a 1/7-depleted triangular lattice},
  author = {Ryo Makuta and Chisa Hotta},
  journal= {arXiv preprint arXiv:2110.06491},
  year   = {2021}
}

Comments

14 pages, 14 figures

R2 v1 2026-06-24T06:50:57.587Z