Physical Review Research (Jan 2022)

Spontaneous chiral-spin ordering in spin-orbit coupled honeycomb magnets

  • Qiang Luo,
  • P. Peter Stavropoulos,
  • Jacob S. Gordon,
  • Hae-Young Kee

DOI
https://doi.org/10.1103/PhysRevResearch.4.013062
Journal volume & issue
Vol. 4, no. 1
p. 013062

Abstract

Read online Read online

Frustrated magnets with highly degenerate ground states are at the heart of hunting exotic states of matter. Recent studies in spin-orbit coupled honeycomb magnets have generated immense interest in bond-dependent interactions, appreciating a symmetric off-diagonal Γ interaction which exhibits a macroscopic degeneracy in the classical limit. Here, we study a generic spin model and discover a chiral-spin (CS) ordering with spontaneously broken time-reversal symmetry near the dominant Γ region. The CS phase is demonstrated to possess a staggered chirality relation in different sublattices, and it exhibits gapless excitations, as revealed by the vanishing energy gap and the finite central charge on cylinders. Although there is a vestige of a tiny peak in the corner of the second Brillouin zone, the magnetic order is likely to vanish as the system size increases. Finally, we also attempt to gain insight into the possible topological signature of the CS phase by calculating the dynamic structure factor and the modular S matrix.