Ferromagnetic resonance in Y3AlFe4O12 garnets

Fuente: arXiv
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Bibliographic Details
Main Authors: Popadiuk, D., Borynskyi, V., Kravets, A., Shlapa, Y., Solopan, S., Belous, A., Tovstolytkin, A., Korenivski, V.
Format: Preprint
Published: 2025
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author Popadiuk, D.
Borynskyi, V.
Kravets, A.
Shlapa, Y.
Solopan, S.
Belous, A.
Tovstolytkin, A.
Korenivski, V.
author_facet Popadiuk, D.
Borynskyi, V.
Kravets, A.
Shlapa, Y.
Solopan, S.
Belous, A.
Tovstolytkin, A.
Korenivski, V.
contents Spin dynamics in Al-substituted yttrium iron garnets is investigated using broadband ferromagnetic resonance measurements in the temperature range T=200-360 K. Using the measured data, the resonance field and linewidth as well as their temperature dependence are determined, with implications for the uniformity and overall quality of the samples prepared via different chemical fabrication routes. These key parameters governing the spin dynamics in the material are important for its applications in high-speed spintronic and magnonic devices.
format Preprint
id arxiv_https___arxiv_org_abs_2501_11969
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Ferromagnetic resonance in Y3AlFe4O12 garnets
Popadiuk, D.
Borynskyi, V.
Kravets, A.
Shlapa, Y.
Solopan, S.
Belous, A.
Tovstolytkin, A.
Korenivski, V.
Materials Science
Spin dynamics in Al-substituted yttrium iron garnets is investigated using broadband ferromagnetic resonance measurements in the temperature range T=200-360 K. Using the measured data, the resonance field and linewidth as well as their temperature dependence are determined, with implications for the uniformity and overall quality of the samples prepared via different chemical fabrication routes. These key parameters governing the spin dynamics in the material are important for its applications in high-speed spintronic and magnonic devices.
title Ferromagnetic resonance in Y3AlFe4O12 garnets
topic Materials Science
url https://arxiv.org/abs/2501.11969