Temperature dependence of the magnon-phonon interaction in high overtone bulk acoustic resonator-ferromagnetic thin film hybrids

Fuente: arXiv
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Main Authors: Müller, Manuel, Weber, Johannes, Goennenwein, Sebastian T. B., Kusminskiy, S. Viola, Gross, Rudolf, Althammer, Matthias, Huebl, Hans
Format: Preprint
Published: 2023
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author Müller, Manuel
Weber, Johannes
Goennenwein, Sebastian T. B.
Kusminskiy, S. Viola
Gross, Rudolf
Althammer, Matthias
Huebl, Hans
author_facet Müller, Manuel
Weber, Johannes
Goennenwein, Sebastian T. B.
Kusminskiy, S. Viola
Gross, Rudolf
Althammer, Matthias
Huebl, Hans
contents Tailored magnon-phonon hybrid systems, where high overtone bulk acoustic resonators couple resonantly to the magnonic mode of a ferromagnetic thin film, are considered optimal for the creation of acoustic phonons with a defined circular polarization. This class of devices is therefore ideal for the investigation of phonon propagation properties and assessing their capacity to transport angular momentum in the classical and potentially even in the quantum regime. Here, we study the coupling between the magnons in a ferromagnetic \ch{Co25Fe75} thin film and the transverse acoustic phonons in a bulk acoustic wave resonators formed by the sapphire substrate onto which the film is deposited. Using broadband ferromagnetic resonance experiments as a function of temperature, we investigate the strength of the coherent magnon-phonon interaction and the individual damping rates of the magnons and phonons participating in the process. This demonstrates that this coupled magnon-phonon system can reach a cooperativity $C\approx 1$ at cryogenic temperatures. Our experiments also showcase the potential of strongly coupled magnon-phonon systems for strain sensing applications.
format Preprint
id arxiv_https___arxiv_org_abs_2311_16725
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Temperature dependence of the magnon-phonon interaction in high overtone bulk acoustic resonator-ferromagnetic thin film hybrids
Müller, Manuel
Weber, Johannes
Goennenwein, Sebastian T. B.
Kusminskiy, S. Viola
Gross, Rudolf
Althammer, Matthias
Huebl, Hans
Mesoscale and Nanoscale Physics
Tailored magnon-phonon hybrid systems, where high overtone bulk acoustic resonators couple resonantly to the magnonic mode of a ferromagnetic thin film, are considered optimal for the creation of acoustic phonons with a defined circular polarization. This class of devices is therefore ideal for the investigation of phonon propagation properties and assessing their capacity to transport angular momentum in the classical and potentially even in the quantum regime. Here, we study the coupling between the magnons in a ferromagnetic \ch{Co25Fe75} thin film and the transverse acoustic phonons in a bulk acoustic wave resonators formed by the sapphire substrate onto which the film is deposited. Using broadband ferromagnetic resonance experiments as a function of temperature, we investigate the strength of the coherent magnon-phonon interaction and the individual damping rates of the magnons and phonons participating in the process. This demonstrates that this coupled magnon-phonon system can reach a cooperativity $C\approx 1$ at cryogenic temperatures. Our experiments also showcase the potential of strongly coupled magnon-phonon systems for strain sensing applications.
title Temperature dependence of the magnon-phonon interaction in high overtone bulk acoustic resonator-ferromagnetic thin film hybrids
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2311.16725