Selection rules and dynamic magnetoelectric effect of the spin waves in multiferroic BiFeO
arXiv:2109.14990 · doi:10.1103/PhysRevB.104.174429
Abstract
We report the magnetic field dependence of the THz absorption and non-reciprocal directional dichroism spectra of BiFeO measured on the three principal crystal cuts for fields applied along the three principal directions of each cut. From the systematic study of the light polarization dependence we deduced the optical selection rules of the spin-wave excitations. Our THz data, combined with small-angle neutron scattering results showed that i) an in-plane magnetic field rotates the vectors of the cycloids perpendicular to the magnetic field, and ii) the selection rules are mostly determined by the orientation of the vector with respect to the electromagnetic fields. We observed a magnetic field history dependent change in the strength and the frequency of the spin-wave modes, which we attributed to the change of the orientation and the length of the cycloidal vector, respectively. Finally, we compared our experimental data with the results of linear spin-wave theory that reproduces the magnetic field dependence of the spin-wave frequencies and most of the selection rules, from which we identified the spin-polarization coupling terms relevant for the optical magnetoelectric effect.
References in corpus (10)
- Weak ferromagnetism and magnetoelectric coupling in bismuth ferrite
- Dynamical magneto-electric coupling in helical magnets
- Structure and spin dynamics of multiferroric BiFeO
- Magnetic dispersion and anisotropy in multiferroic BiFeO3
- Optical coupling to spin waves in the cycloidal multiferroic BiFeO3
- Direct coupling of ferromagnetic moment and ferroelectric polarization in BiFeO
- Spin excitations of magnetoelectric LiNiPO in multiple magnetic phases
- Quantum Dynamics of Multiferroic Helimagnets: a Schwinger-Boson Approach
- Magnetic resonances of multiferroic TbFe(BO)
- The Magnetoelastic Distortion of Multiferroic BiFeO in the Canted Antiferromagnetic State