Control of magnon frequency combs in magnetic rings

C Christopher Heins (Helmholtz-Zentrum Dresden–Rossendorf, Institut für Ionenstrahlphysik und Materialforschung 1 , D-01328 Dresden,) A Attila Kákay (Helmholtz-Zentrum Dresden–Rossendorf, Institut für Ionenstrahlphysik und Materialforschung 1 , D-01328 Dresden,) J Joo-Von Kim (Centre de Nanosciences et de Nanotechnologies, CNRS, Université Paris-Saclay 3 , 91120 Palaiseau,) G Gregor Hlawacek (Helmholtz-Zentrum Dresden–Rossendorf, Institut für Ionenstrahlphysik und Materialforschung 1 , D-01328 Dresden,) J Jürgen Fassbender K Katrin Schultheiss (Helmholtz-Zentrum Dresden–Rossendorf, Institut für Ionenstrahlphysik und Materialforschung 1 , D-01328 Dresden,) H Helmut Schultheiss (Helmholtz-Zentrum Dresden–Rossendorf, Institut für Ionenstrahlphysik und Materialforschung 1 , D-01328 Dresden,)

Abstract

Using Brillouin light scattering microscopy, we study the rich dynamics in magnetic disks and rings governed by nonlinear interactions, focusing on the role of vortex core dynamics on the spin-wave eigenmode spectrum. By strongly exciting quantized magnon modes in magnetic vortices, self-induced magnon Floquet states are populated by the intrinsic nonlinear coupling of magnon modes to the vortex core gyration. As a result, magnon frequency combs are formed. In magnetic rings, however, this generation is suppressed even when exciting the system over a large power range. To retrieve frequency combs by the rich nonlinear dynamics in rings, we apply external in-plane magnetic fields by which the vortex core is nucleated. Our findings demonstrate how to take active control of the nonlinear processes and, thereby, the generation of magnon frequency combs in magnetic structures of different topology.

Article Details

Volume / Issue Vol. 128, Issue 8
Published February 23, 2026
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (7)

C

Christopher Heins

Helmholtz-Zentrum Dresden–Rossendorf, Institut für Ionenstrahlphysik und Materialforschung 1 , D-01328 Dresden,

A

Attila Kákay

Helmholtz-Zentrum Dresden–Rossendorf, Institut für Ionenstrahlphysik und Materialforschung 1 , D-01328 Dresden,

J

Joo-Von Kim

Centre de Nanosciences et de Nanotechnologies, CNRS, Université Paris-Saclay 3 , 91120 Palaiseau,

G

Gregor Hlawacek

Helmholtz-Zentrum Dresden–Rossendorf, Institut für Ionenstrahlphysik und Materialforschung 1 , D-01328 Dresden,

J

Jürgen Fassbender

K

Katrin Schultheiss

Helmholtz-Zentrum Dresden–Rossendorf, Institut für Ionenstrahlphysik und Materialforschung 1 , D-01328 Dresden,

H

Helmut Schultheiss

Helmholtz-Zentrum Dresden–Rossendorf, Institut für Ionenstrahlphysik und Materialforschung 1 , D-01328 Dresden,