Observation of Coherently Coupled Cation Spin Dynamics in an Insulating Ferrimagnetic Oxide
arXiv:2302.03100 · doi:10.1063/5.0141869
Abstract
Many technologically useful magnetic oxides are ferrimagnetic insulators, which consist of chemically distinct cations. Here, we examine the spin dynamics of different magnetic cations in ferrimagnetic NiZnAl-ferrite (NiZnAlFeO) under continuous microwave excitation. Specifically, we employ time-resolved x-ray ferromagnetic resonance to separately probe Fe and Ni cations on different sublattice sites. Our results show that the precessing cation moments retain a rigid, collinear configuration to within 2. Moreover, the effective spin relaxation is identical to within 10% for all magnetic cations in the ferrite. We thus validate the oft-assumed ``ferromagnetic-like'' dynamics in resonantly driven ferrimagnetic oxides, where the magnetic moments from different cations precess as a coherent, collective magnetization.