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research article

Nonlocal Detection of Interlayer Three-Magnon Coupling

Sheng, Lutong
•
Elyasi, Mehrdad
•
Chen, Jilei
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January 27, 2023
Physical Review Letters

A leading nonlinear effect in magnonics is the interaction that splits a high-frequency magnon into two low-frequency magnons with conserved linear momentum. Here, we report experimental observation of nonlocal three-magnon scattering between spatially separated magnetic systems, viz. a CoFeB nanowire and a yttrium iron garnet (YIG) thin film. Above a certain threshold power of an applied microwave field, a CoFeB Kittel magnon splits into a pair of counterpropagating YIG magnons that induce voltage signals in Pt electrodes on each side, in excellent agreement with model calculations based on the interlayer dipolar interaction. The excited YIG magnon pairs reside mainly in the first excited (n = 1) perpendicular standing spin-wave mode. With increasing power, the n = 1 magnons successively scatter into nodeless (n = 0) magnons through a four-magnon process. Our results demonstrate nonlocal detection of two separately propagating magnons emerging from one common source that may enable quantum entanglement between distant magnons for quantum information applications.

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Type
research article
DOI
10.1103/PhysRevLett.130.046701
Web of Science ID

WOS:000925756600001

Author(s)
Sheng, Lutong
Elyasi, Mehrdad
Chen, Jilei
He, Wenqing
Wang, Yizhan
Wang, Hanchen
Feng, Hongmei
Zhang, Yu
Medlej, Israa
Liu, Song
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Date Issued

2023-01-27

Publisher

AMER PHYSICAL SOC

Published in
Physical Review Letters
Volume

130

Issue

4

Article Number

046701

Subjects

Physics, Multidisciplinary

•

Physics

•

spin-wave spectrum

•

ferromagnetic-films

•

dynamics

•

magnon

•

modes

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

Available on Infoscience
March 13, 2023
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/195882
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