Investigation of Spin-Wave Dynamics in Gyroid Nanostructures

Fuente: arXiv
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Autori principali: Gołębiewski, Mateusz, Hertel, Riccardo, Vasyuchka, Vitaliy, Weiler, Mathias, Pirro, Philipp, Krawczyk, Maciej, Fukami, Shunsuke, Ohno, Hideo, Llandro, Justin
Natura: Preprint
Pubblicazione: 2023
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author Gołębiewski, Mateusz
Hertel, Riccardo
Vasyuchka, Vitaliy
Weiler, Mathias
Pirro, Philipp
Krawczyk, Maciej
Fukami, Shunsuke
Ohno, Hideo
Llandro, Justin
author_facet Gołębiewski, Mateusz
Hertel, Riccardo
Vasyuchka, Vitaliy
Weiler, Mathias
Pirro, Philipp
Krawczyk, Maciej
Fukami, Shunsuke
Ohno, Hideo
Llandro, Justin
contents A new concept in magnonics studies the dynamics of spin waves (SWs) in three-dimensional nanosystems. It is a natural evolution from conventionally used planar systems to explore magnetization configurations and dynamics in 3D nanostructures with lengths near intrinsic magnetic scales. In this work, we perform broadband ferromagnetic resonance (BBFMR) measurements and micromagnetic simulations of nanoscale magnetic gyroids - a periodic chiral structure consisting entirely of chiral triple junctions. Our results show unique properties of the network, such as the localization of the SW modes, evoking their topological properties, and the substantial sensitivity to the direction of the static magnetic field. The presented results open a wide range of applications in the emerging field of 3D magnonic crystals and spintronics.
format Preprint
id arxiv_https___arxiv_org_abs_2305_06319
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Investigation of Spin-Wave Dynamics in Gyroid Nanostructures
Gołębiewski, Mateusz
Hertel, Riccardo
Vasyuchka, Vitaliy
Weiler, Mathias
Pirro, Philipp
Krawczyk, Maciej
Fukami, Shunsuke
Ohno, Hideo
Llandro, Justin
Mesoscale and Nanoscale Physics
A new concept in magnonics studies the dynamics of spin waves (SWs) in three-dimensional nanosystems. It is a natural evolution from conventionally used planar systems to explore magnetization configurations and dynamics in 3D nanostructures with lengths near intrinsic magnetic scales. In this work, we perform broadband ferromagnetic resonance (BBFMR) measurements and micromagnetic simulations of nanoscale magnetic gyroids - a periodic chiral structure consisting entirely of chiral triple junctions. Our results show unique properties of the network, such as the localization of the SW modes, evoking their topological properties, and the substantial sensitivity to the direction of the static magnetic field. The presented results open a wide range of applications in the emerging field of 3D magnonic crystals and spintronics.
title Investigation of Spin-Wave Dynamics in Gyroid Nanostructures
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2305.06319