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Resonant excitations via low frequency pumping in driven magnon systems

2026/07/20 by Jan Mathis Giesen, Alexandre Abbass Hamadeh, Imke Schneider +2
#cond-mat.mes-hall #cond-mat.other #cond-mat.quant-gas

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Abstract

We analyse resonant excitations of ferromagnetic magnons via microwave pumping using Floquet theory. Special focus is put on driving frequencies that are below the corresponding magnon energy, which can be excited in large parameter regions via parametric resonances. We develop a theoretical framework that analytically predicts the regions of resonances and resonance thresholds in thin films of ferro- and ferri-magnetic materials like YIG as a function of damping, amplitude and frequency. Resonance regions are separated by exceptional points of the quasi-energies and the results are compared with micromagnetic simulations. The corresponding threshold amplitudes can be estimated from a characteristic powerlaw with damping, leading to the possibility of targeted exciatations at selected wavenumbers using low frequency drive.

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