arXiv · 2006.11318
Coupled skyrmion breathing modes in synthetic ferri- and antiferromagnets
Abstract
We present micromagnetic simulations of the dynamic GHz-range resonance modes of skyrmions excited by either out-of-plane ac magnetic fields or spin torques in prototypical synthetic ferri- and antiferromagnetic trilayer structures. The observed features in the calculated power spectra exhibit a systematic dependence on the coupling strength between the individual magnetic layers and are related to pure in-phase and anti-phase breathing modes as well as to hybridizations of breathing and spin-wave modes that are characteristic for the considered circular-shaped geometry. The experimental detection of these resonant oscillation modes may provide a means for skyrmion sensing applications and for the general characterization of skyrmion states in multilayer stacks with antiferromagnetic interlayer exchange coupling.
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Martin Lonsky, Axel Hoffmann. 2020-08-17. Coupled skyrmion breathing modes in synthetic ferri- and antiferromagnets. https://doi.org/10.1103/physrevb.102.104403
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