Higher-order ferromagnetic resonances in periodic arrays of synthetic-antiferromagnet nanodiscs

Fuente: arXiv
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Main Authors: Borynskyi, V. Yu., Polishchuk, D. M., Melnyk, A. K., Kravets, A. F., Tovstolytkin, A. I., Korenivski, V.
Format: Preprint
Published: 2021
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author Borynskyi, V. Yu.
Polishchuk, D. M.
Melnyk, A. K.
Kravets, A. F.
Tovstolytkin, A. I.
Korenivski, V.
author_facet Borynskyi, V. Yu.
Polishchuk, D. M.
Melnyk, A. K.
Kravets, A. F.
Tovstolytkin, A. I.
Korenivski, V.
contents We investigate spin dynamics in nanodisc arrays of synthetic-antiferromagnets (SAF) made of Py/NiCu/Py trilayers, where the NiCu spacer undergoes a Curie transition at about 200 K. The observed ferromagnetic resonance spectra have three distinct resonance modes at room temperature, which are fully recreated in our micromagnetic simulations showing also how the intra-SAF asymmetry can be used to create and control the higher-order resonances in the structure. Below the Curie temperature of the spacer, the system effectively transitions into a single-layer nanodisc array with only two resonance modes. Our results show how multi-layering of nano-arrays can add tunable GHz functionality relevant for such rapidly developing fields as magnetic meta-materials, magnonic crystals, arrays of spin-torque oscillators and neuromorphic junctions.
format Preprint
id arxiv_https___arxiv_org_abs_2108_10581
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Higher-order ferromagnetic resonances in periodic arrays of synthetic-antiferromagnet nanodiscs
Borynskyi, V. Yu.
Polishchuk, D. M.
Melnyk, A. K.
Kravets, A. F.
Tovstolytkin, A. I.
Korenivski, V.
Mesoscale and Nanoscale Physics
Applied Physics
We investigate spin dynamics in nanodisc arrays of synthetic-antiferromagnets (SAF) made of Py/NiCu/Py trilayers, where the NiCu spacer undergoes a Curie transition at about 200 K. The observed ferromagnetic resonance spectra have three distinct resonance modes at room temperature, which are fully recreated in our micromagnetic simulations showing also how the intra-SAF asymmetry can be used to create and control the higher-order resonances in the structure. Below the Curie temperature of the spacer, the system effectively transitions into a single-layer nanodisc array with only two resonance modes. Our results show how multi-layering of nano-arrays can add tunable GHz functionality relevant for such rapidly developing fields as magnetic meta-materials, magnonic crystals, arrays of spin-torque oscillators and neuromorphic junctions.
title Higher-order ferromagnetic resonances in periodic arrays of synthetic-antiferromagnet nanodiscs
topic Mesoscale and Nanoscale Physics
Applied Physics
url https://arxiv.org/abs/2108.10581