paper

Spin-waves in the orthorombic square-lattice Heisenberg models: Application to the iron pnictide materials

arXiv:0910.1793 · doi:10.1103/PhysRevB.81.024505

Abstract

Motivated by the observation of spatially anisotropic exchange constants in the iron pnictide materials, we study the spin-wave spectra of the Heisenberg models on a square-lattice with nearest neighbor exchange along x and along y axis and a second neighbor exchange . We focus on the regime, where the spins order at (), and compute the spectra by systematic expansions around the Ising limit. We study both spin-half and spin-one Heisenberg models as well as a range of parameters to cover various cases proposed for the iron pnictide materials. The low-energy spectra have anisotropic spin-wave velocities and are renormalized with respect to linear spin-wave theory by up to 20 percent, depending on parameters. Extreme anisotropy, consisting of a ferromagnetic , is best distinguished from a weak anisotropy (, ) by the nature of the spin-waves near the wavevectors () or (). The reported spectra for the pnictide material CaFeAs clearly imply such an extreme anisotropy.

6 pages, 10 figures