Theory of spin waves in a hexagonal antiferromagnet
Abstract
We construct a field-theoretic description of spin waves in hexagonal antiferromagnets with three magnetic sublattices and coplanar magnetic order. The three Goldstone modes can be separated by point-group symmetry into a singlet and a doublet . The singlet is described by the standard theory of a free relativistic scalar field. The field theory of the doublet is analogous to the theory of elasticity of a two-dimensional isotropic solid with distinct longitudinal and transverse "speeds of sound". The well-known Heisenberg models on the triangular and kagome lattices with nearest-neighbour exchange turn out to be special cases with accidental degeneracy of the spin-wave velocities. The speeds of sound can be readily calculated for any lattice model. We apply this approach to the compounds of the MnX family with stacked kagome layers.
Cite
@article{arxiv.2004.02790,
title = {Theory of spin waves in a hexagonal antiferromagnet},
author = {Sayak Dasgupta and Oleg Tchernyshyov},
journal= {arXiv preprint arXiv:2004.02790},
year = {2020}
}
Comments
10 pages, 6 figures, Referee comments incorporated, Includes appendices with details on Mn3Ge model