Frustration model and spin excitations in the helimagnet FeP
arXiv:2201.10358 · doi:10.1103/PhysRevB.105.134424
Abstract
The metallic compound FeP belongs to the class of materials that feature a complex noncollinear spin order driven by magnetic frustration. While its double-helix magnetic structure with a period , where is the lattice constant, was previously well determined, the relevant spin-spin interactions that lead to that ground state remain unknown. By performing extensive inelastic neutron scattering measurements, we obtained the spin-excitation spectra in a large part of the momentum-energy space. The spectra show that the magnons are gapped with a gap energy of 5 meV. Despite the 3D crystal structure, the magnon modes display strongly anisotropic dispersions, revealing a quasi-one-dimensional character of the magnetic interactions in FeP. The physics of the material, however, is not determined by the dominating exchange, which is ferromagnetic. Instead, the weaker two-dimensional antiferromagnetic interactions between the rigid ferromagnetic spin chains drive the magnetic frustration. Using linear spin-wave theory, we were able to construct an effective Heisenberg Hamiltonian with an anisotropy term capable of reproducing the observed spectra. This enabled us to quantify the exchange interactions in FeP and determine the mechanism of its magnetic frustration.
13 pages, 7 figures
References in corpus (12)
- A new class of chiral materials hosting magnetic skyrmions beyond room temperature
- Long wavelength helimagnetic order and skyrmion lattice phase in Cu2OSeO3
- Symmetry of spin excitation spectra in the tetragonal paramagnetic and superconducting phases of 122-ferropnictides
- Tomonaga-Luttinger Liquid Behavior and Spinon Confinement in YbAlO
- Non-collinear spin-density wave antiferromagnetism in FeAs
- Competing exchange interactions on the verge of a metal-insulator transition in the two-dimensional spiral magnet SrFeO
- Microwave spectroscopy of the low-temperature skyrmion state in Cu2OSeO3
- The dynamics of linarite: Observations of magnetic excitations
- Spin Spiral and Topological Hall Effect in a Metamagnet FeGa
- Magnetic spiral induced by strong correlations in MnAu
- From one- to two-magnon excitations in the S=3/2 magnet -CaCrO
- Anomalous helimagnetic domain shrinkage due to the weakening of Dzyaloshinskii-Moriya interaction in CrAs