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Magnon-polaron control in a surface magnetoacoustic wave resonator

Magnon-polaron control in a surface magnetoacoustic wave resonator

来源:Arxiv_logoArxiv
英文摘要

Strong coupling between distinct quasiparticles in condensed matter systems gives rise to hybrid states with emergent properties. We demonstrate the hybridization of confined phonons and finite-wavelength magnons, forming a magnon-polaron cavity with tunable coupling strength and spatial confinement controlled by the applied magnetic field direction. Our platform consists of a low-loss, single-crystalline yttrium iron garnet (YIG) film coupled to a zinc oxide (ZnO)-based surface acoustic wave (SAW) resonator. This heterostructure enables exceptionally low magnon-polaron dissipation rates below $\kappa / 2\pi < 1.5\;$MHz. The observed mode hybridization is well described by a phenomenological model incorporating the spatial profiles of magnon and phonon modes. Furthermore, we report the first observation of Rabi-like oscillations in a coupled SAW-spin wave system, revealing the dynamical formation of magnon-polarons in the time domain. These results establish a platform for engineering hybrid spin-acoustic excitations in extended magnetic systems and enable time-resolved studies of magnon-polaron states.

Kevin Künstle、Yannik Kunz、Tarek Moussa、Katharina Lasinger、Kei Yamamoto、Philipp Pirro、John F. Gregg、Akashdeep Kamra、Mathias Weiler

10.5281/zenodo.15639590

物理学材料科学

Kevin Künstle,Yannik Kunz,Tarek Moussa,Katharina Lasinger,Kei Yamamoto,Philipp Pirro,John F. Gregg,Akashdeep Kamra,Mathias Weiler.Magnon-polaron control in a surface magnetoacoustic wave resonator[EB/OL].(2025-06-11)[2025-07-16].https://arxiv.org/abs/2506.09717.点此复制

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