Curvilinear magnonic crystal based on 3D hierarchical nanotemplates

Fuente: arXiv
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Main Authors: Gubbiotti, Gianluca, Bezsmertna, Olha, Pylypovskyi, Oleksandr V., Xu, Rui, Chiroli, Stephane, Zighem, Fatih, Gonzalez, Claudia Fernandez, Sorrentino, Andrea, Raftrey, David, Wolf, Daniel, Lubk, Axel, Fischer, Peter, Faurie, Damien, Makarov, Denys
Format: Preprint
Published: 2025
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author Gubbiotti, Gianluca
Bezsmertna, Olha
Pylypovskyi, Oleksandr V.
Xu, Rui
Chiroli, Stephane
Zighem, Fatih
Gonzalez, Claudia Fernandez
Sorrentino, Andrea
Raftrey, David
Wolf, Daniel
Lubk, Axel
Fischer, Peter
Faurie, Damien
Makarov, Denys
author_facet Gubbiotti, Gianluca
Bezsmertna, Olha
Pylypovskyi, Oleksandr V.
Xu, Rui
Chiroli, Stephane
Zighem, Fatih
Gonzalez, Claudia Fernandez
Sorrentino, Andrea
Raftrey, David
Wolf, Daniel
Lubk, Axel
Fischer, Peter
Faurie, Damien
Makarov, Denys
contents Curvilinear magnetic nanostructures enable control of magnetization dynamics through geometry-induced anisotropy and chiral interactions as well as magnetic field modulation. In this work, we report a curvilinear magnonic crystal based on large-area square arrays of truncated nanospikes fabricated by conformal coating of 3D hierarchical templates with permalloy thin films. Brillouin light scattering spectroscopy reveals anisotropic band structure with multiple dispersive and folded Bloch-type dispersive spin-wave modes as well as non-dispersive modes exhibiting direction-dependent frequency shifts and intensity asymmetries along lattice principal axes. Finite element micromagnetic simulations indicate that curvature-induced variations of the demagnetizing field govern the magnonic response, enabling the identification of modes propagating in nanochannels and other localized on nanospike apexes or along the ridges connecting adjacent nanospikes. The combination of geometric curvature and optical probing asymmetry produces directional dependence of magnonic bands, establishing 3D hierarchical templates as a versatile platform for curvature-engineered magnonics.
format Preprint
id arxiv_https___arxiv_org_abs_2512_11663
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Curvilinear magnonic crystal based on 3D hierarchical nanotemplates
Gubbiotti, Gianluca
Bezsmertna, Olha
Pylypovskyi, Oleksandr V.
Xu, Rui
Chiroli, Stephane
Zighem, Fatih
Gonzalez, Claudia Fernandez
Sorrentino, Andrea
Raftrey, David
Wolf, Daniel
Lubk, Axel
Fischer, Peter
Faurie, Damien
Makarov, Denys
Strongly Correlated Electrons
Mesoscale and Nanoscale Physics
Curvilinear magnetic nanostructures enable control of magnetization dynamics through geometry-induced anisotropy and chiral interactions as well as magnetic field modulation. In this work, we report a curvilinear magnonic crystal based on large-area square arrays of truncated nanospikes fabricated by conformal coating of 3D hierarchical templates with permalloy thin films. Brillouin light scattering spectroscopy reveals anisotropic band structure with multiple dispersive and folded Bloch-type dispersive spin-wave modes as well as non-dispersive modes exhibiting direction-dependent frequency shifts and intensity asymmetries along lattice principal axes. Finite element micromagnetic simulations indicate that curvature-induced variations of the demagnetizing field govern the magnonic response, enabling the identification of modes propagating in nanochannels and other localized on nanospike apexes or along the ridges connecting adjacent nanospikes. The combination of geometric curvature and optical probing asymmetry produces directional dependence of magnonic bands, establishing 3D hierarchical templates as a versatile platform for curvature-engineered magnonics.
title Curvilinear magnonic crystal based on 3D hierarchical nanotemplates
topic Strongly Correlated Electrons
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2512.11663