Hybrid structure with a ferromagnetic film and an array of magnetic molecules for deep-nanoscale reprogrammable magnonics

Fuente: arXiv
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Main Authors: Pastukh, Oleksandr, Graczyk, Piotr, Zelent, Mateusz, Laskowski, Lukasz, Krawczyk, Maciej
Format: Preprint
Published: 2025
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author Pastukh, Oleksandr
Graczyk, Piotr
Zelent, Mateusz
Laskowski, Lukasz
Krawczyk, Maciej
author_facet Pastukh, Oleksandr
Graczyk, Piotr
Zelent, Mateusz
Laskowski, Lukasz
Krawczyk, Maciej
contents Miniaturization is an essential element in the development of information processing technologies and is also one of the main determinants of the usability of the tested artificial neural networks. It is also a key element and one of the main challenges in the development of magnonic neuromorphic systems. In this work, we propose a new platform for the development of these new spin-wave-based technologies. Using micromagnetic simulations, we demonstrate that magnetic molecules regularly arranged on the surface of a thin ferromagnetic layer enable resonant coupling of propagating spin waves with the dynamics of the molecules' magnetic moments, opening a gap in the transmission spectrum up to 150 MHz. The gap, its width, and frequency can be controlled by an external magnetic field or the arrangement of molecules on the ferromagnetic surface. Furthermore, the antiferromagnetic arrangement of the magnetic moments of molecules or clusters of molecules allows for control of the gap's position and width. Thus, the proposed hybrid structure offers reprogrammability and miniaturization down to the deep nanoscale, operating frequencies in the range of several GHz, key properties for the implementation of artificial neural networks.
format Preprint
id arxiv_https___arxiv_org_abs_2511_22284
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Hybrid structure with a ferromagnetic film and an array of magnetic molecules for deep-nanoscale reprogrammable magnonics
Pastukh, Oleksandr
Graczyk, Piotr
Zelent, Mateusz
Laskowski, Lukasz
Krawczyk, Maciej
Mesoscale and Nanoscale Physics
Miniaturization is an essential element in the development of information processing technologies and is also one of the main determinants of the usability of the tested artificial neural networks. It is also a key element and one of the main challenges in the development of magnonic neuromorphic systems. In this work, we propose a new platform for the development of these new spin-wave-based technologies. Using micromagnetic simulations, we demonstrate that magnetic molecules regularly arranged on the surface of a thin ferromagnetic layer enable resonant coupling of propagating spin waves with the dynamics of the molecules' magnetic moments, opening a gap in the transmission spectrum up to 150 MHz. The gap, its width, and frequency can be controlled by an external magnetic field or the arrangement of molecules on the ferromagnetic surface. Furthermore, the antiferromagnetic arrangement of the magnetic moments of molecules or clusters of molecules allows for control of the gap's position and width. Thus, the proposed hybrid structure offers reprogrammability and miniaturization down to the deep nanoscale, operating frequencies in the range of several GHz, key properties for the implementation of artificial neural networks.
title Hybrid structure with a ferromagnetic film and an array of magnetic molecules for deep-nanoscale reprogrammable magnonics
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2511.22284