A frustrated spin-1 $J_{1}$--$J_{2}$ Heisenberg antiferromagnet: An anisotropic planar pyrochlore model
Abstract
The zero-temperature ground-state (GS) properties and phase diagram of a frustrated spin-1 -- Heisenberg model on the checkerboard square lattice are studied, using the coupled cluster method. We consider the case where the nearest-neighbour exchange bonds have strength and the next-nearest-neighbour exchange bonds present (viz., in the checkerboard pattern of the planar pyrochlore) have strength . We find significant differences from both the spin-1/2 and classical versions of the model. We find that the spin-1 model has a first phase transition at (as does the classical model at ) between two antiferromagnetic phases, viz., a quasiclassical N\'{e}el phase (for ) and one of the infinitely degenerate family of quasiclassical phases (for ) that exists in the classical model for , which is now chosen by the {\it order by disorder} mechanism as (probably) the "doubled N\'{e}el" (or N\'{e}el) state. By contrast, none of this family survives quantum fluctuations to form a stable GS phase in the spin-1/2 case. We also find evidence for a second quantum critical point at in the spin-1 model, such that for the quasiclassical (N\'{e}el) ordering melts and a nonclassical phase appears, which, on the basis of preliminary evidence, appears unlikely to have crossed-dimer valence-bond crystalline (CDVBC) ordering, as in the spin-1/2 case. Unlike in the spin-1/2 case, where the N\'{e}el and CDVBC phases are separated by a phase with plaquette valence-bond crystalline (PVBC) ordering, we find very preliminary evidence for such a PVBC state in the spin-1 model for all .
Keywords
Cite
@article{arxiv.1312.2420,
title = {A frustrated spin-1 $J_{1}$--$J_{2}$ Heisenberg antiferromagnet: An anisotropic planar pyrochlore model},
author = {P H Y Li and R F Bishop and C E Campbell},
journal= {arXiv preprint arXiv:1312.2420},
year = {2014}
}