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Three-dimensional nanoscale control of magnetism in crystalline Yttrium Iron Garnet

Authors :
Levati, Valerio
Vitali, Matteo
Del Giacco, Andrea
Pellizzi, Nicola
Silvani, Raffaele
Mavilla, Luca Ciaccarini
Madami, Marco
Biancardi, Irene
Girardi, Davide
Panzeri, Matteo
Florio, Piero
Breitbach, David
Pirro, Philipp
Rovatti, Ludovica
Lecis, Nora
Maspero, Federico
Bertacco, Riccardo
Corrielli, Giacomo
Osellame, Roberto
Russo, Valeria
Bassi, Andrea Li
Tacchi, Silvia
Petti, Daniela
Albisetti, Edoardo
Publication Year :
2024

Abstract

The exceptional magnetic, optical and phononic properties of Yttrium Iron Garnet (YIG) make it unique for spin-wave based and photonic applications. Yet, nanostructuring crystalline YIG and manipulating its magnetism in a non-destructive way is an outstanding challenge, and so far mostly limited to two-dimensional capabilities. Here, we show that irradiation of single-crystal YIG films with a focused UV laser drives a stable, giant enhancement of the perpendicular magnetic anisotropy, preserving the crystalline quality. This modulation is highly confined at the nanoscale in both the lateral and vertical directions, and its extension within the volume can be finely tuned with a continuous depth-control. By harnessing these three-dimensional anisotropy profiles, we demonstrate a large tuning of the spin-wave band structure, volume spatial localization, and non-reciprocity, realizing proof-of-principle 3D magnonic crystals. This straightforward, single-step, laser nanofabrication of three-dimensional magnetic systems based on crystalline YIG thin films opens the way to design novel functions in magnonic and magneto-optic devices.<br />Comment: 17 pages, 5 figures

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2409.17722
Document Type :
Working Paper