English

Plaquette order in classical spin liquid stabilized by strong off-diagonal exchange

Strongly Correlated Electrons 2019-07-02 v1

Abstract

We report a new classical spin liquid in which the collective flux degrees of freedom break the translation symmetry of the honeycomb lattice. This exotic phase exists in frustrated spin-orbit magnets where a dominant off-diagonal exchange, the so-called Γ\Gamma term, results in a macroscopic ground-state degeneracy at the classical level. We demonstrate that the system undergoes a phase transition driven by thermal order-by-disorder at a critical temperature Tc0.04ΓT_c \approx 0.04 |\Gamma|. At first sight, this transition reduces an emergent spherical spin-symmetry to a cubic one: spins point predominantly toward the cubic axes at T<TcT < T_c. However, this seems to simply restore the cubic symmetry of the Γ\Gamma model, and the non-coplanar spins remain disordered below TcT_c. We show that the phase transition actually corresponds to plaquette ordering of hexagonal fluxes and the cubic symmetry is indeed broken, a scenario that is further confirmed by our extensive Monte Carlo simulations.

Keywords

Cite

@article{arxiv.1803.05517,
  title  = {Plaquette order in classical spin liquid stabilized by strong off-diagonal exchange},
  author = {Preetha Saha and Zhijie Fan and Depei Zhang and Gia-Wei Chern},
  journal= {arXiv preprint arXiv:1803.05517},
  year   = {2019}
}

Comments

7 pages, 6 figures