Loop-gap resonators achieving strong magnon-photon coupling in magnetic insulator thin films

Fuente: arXiv
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Main Authors: Zanichelli, Francesca, Petrosyan, Davit, Wang, Hanchen, Helbingk, Patrick, Schlitz, Richard, Gambardella, Pietro, Legrand, William
Format: Preprint
Published: 2026
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author Zanichelli, Francesca
Petrosyan, Davit
Wang, Hanchen
Helbingk, Patrick
Schlitz, Richard
Gambardella, Pietro
Legrand, William
author_facet Zanichelli, Francesca
Petrosyan, Davit
Wang, Hanchen
Helbingk, Patrick
Schlitz, Richard
Gambardella, Pietro
Legrand, William
contents Magnon-photon hybrid systems consisting of a three-dimensional electromagnetic resonator and a bulk magnetic insulator constitute the standard experimental platform in cavity magnonics. Here, we demonstrate a modular loop-gap resonator design optimized to couple with thin films of magnetic insulators. We achieve the strong-coupling regime using this loop-gap resonator coupled to a 75~nm-thick epitaxial film of yttrium iron garnet at room temperature. We further show how to perform field-differential spectroscopy of the hybrid magnon-photon system, which eliminates the unwanted signal from other loop-gap modes uncoupled to the magnetic film. In addition to the uniform ferromagnetic resonance mode, the loop-gap resonator enables an hybridization with the standing spin-wave modes forming across the thickness of the film. Our approach unlocks the use of epitaxial films and multilayers of magnetic insulators to tune the magnon band structure in cavity magnonics experiments.
format Preprint
id arxiv_https___arxiv_org_abs_2601_23123
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Loop-gap resonators achieving strong magnon-photon coupling in magnetic insulator thin films
Zanichelli, Francesca
Petrosyan, Davit
Wang, Hanchen
Helbingk, Patrick
Schlitz, Richard
Gambardella, Pietro
Legrand, William
Mesoscale and Nanoscale Physics
Applied Physics
Magnon-photon hybrid systems consisting of a three-dimensional electromagnetic resonator and a bulk magnetic insulator constitute the standard experimental platform in cavity magnonics. Here, we demonstrate a modular loop-gap resonator design optimized to couple with thin films of magnetic insulators. We achieve the strong-coupling regime using this loop-gap resonator coupled to a 75~nm-thick epitaxial film of yttrium iron garnet at room temperature. We further show how to perform field-differential spectroscopy of the hybrid magnon-photon system, which eliminates the unwanted signal from other loop-gap modes uncoupled to the magnetic film. In addition to the uniform ferromagnetic resonance mode, the loop-gap resonator enables an hybridization with the standing spin-wave modes forming across the thickness of the film. Our approach unlocks the use of epitaxial films and multilayers of magnetic insulators to tune the magnon band structure in cavity magnonics experiments.
title Loop-gap resonators achieving strong magnon-photon coupling in magnetic insulator thin films
topic Mesoscale and Nanoscale Physics
Applied Physics
url https://arxiv.org/abs/2601.23123