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  4. Multi-directional emission and detection of spin waves propagating in yttrium iron garnet with wavelengths down to about 100 nm
 
research article

Multi-directional emission and detection of spin waves propagating in yttrium iron garnet with wavelengths down to about 100 nm

Maendl, Stefan
•
Grundler, Dirk
May 11, 2018
Applied Physics Letters

We performed broadband spin-wave spectroscopy on 200 nm thick yttrium iron garnet containing arrays of partially embedded magnetic nanodisks. Using integrated coplanar waveguides (CPWs), we studied the excitation and transmission of spin waves depending on the presence of nanomagnet arrays of different lateral extensions. By means of the grating coupler effect, we excited spin waves propagating in multiple lateral directions with wavelengths down to 111 nm. They exhibited group velocities of up to 1 km/s. Detection of such short-wavelength spin waves was possible only in symmetrically designed emitter/detector configurations, not with a bare CPW. We report spin waves propagating between grating couplers under oblique angles exhibiting a wave vector component parallel to the CPW. The effective propagation distance amounted to about 80 μm. Such transmission signals were not addressed before and substantiate the versatility of the grating coupler effect for implementing nanomagnonic circuits.

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Type
research article
DOI
10.1063/1.5026060
Author(s)
Maendl, Stefan
Grundler, Dirk
Date Issued

2018-05-11

Publisher

AIP American Institute of Physics

Published in
Applied Physics Letters
Volume

112

Issue

19

Article Number

192410

Subjects

magnonics

•

spin wave

•

ferrimagnet

•

yttrium iron garnet

•

YIG

•

grating coupler

•

liquid phase epitaxy

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LMGN  
FunderGrant Number

Other foundations

GR1640/5-2

Other foundations

Nanosystems Initiative Munich NIM-2

Available on Infoscience
November 7, 2018
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/149712
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