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research article

Perspective on nonvolatile magnon-signal storage and in-memory computation for low-power consuming magnonics

Nizet, Arnaud Emile S.  
•
Xu, Mingran  
•
Joglekar, Shreyas Sanjay  
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April 21, 2025
Applied Physics Letters

Magnons are the quanta of spin waves and transport angular momenta through magnetically ordered materials. They can be used to distribute and control on-chip GHz signals without charge flow, thereby avoiding Joule heating. Beyond multiplexed signal processing, filtering, and Boolean logic, they allow for hardware implementation of neural networks exploiting cascaded magnon scattering on the nanoscale. A game-changing boost is expected if nonvolatile magnon-signal storage and in-memory computation schemes become realistic. We outline recent progress in experimental research and micromagnetic modeling toward these goals before sketching remaining challenges.

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Type
research article
DOI
10.1063/5.0260884
Author(s)
Nizet, Arnaud Emile S.  
•
Xu, Mingran  
•
Joglekar, Shreyas Sanjay  
•
Mucchietto, Andrea  
•
Grundler, Dirk  
Date Issued

2025-04-21

Publisher

AIP Publishing

Published in
Applied Physics Letters
Volume

126

Issue

16

Article Number

160502

Subjects

magnonics

•

spin waves

•

microwaves

•

ferrimagnet

•

ferromagnet

•

memory

•

neural network

Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LMGN  
FunderFunding(s)Grant NumberGrant URL

Swiss National Science Foundation

197360

Available on Infoscience
April 25, 2025
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/249429
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