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  4. Optically Triggered Neel Vector Manipulation of a Metallic Antiferromagnet Mn2Au under Strain
 
research article

Optically Triggered Neel Vector Manipulation of a Metallic Antiferromagnet Mn2Au under Strain

Grigorev, Vladimir
•
Filianina, Mariia
•
Lytvynenko, Yaryna
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November 21, 2022
Acs Nano

The absence of stray fields, their insensitivity to external magnetic fields, and ultrafast dynamics make antiferromagnets promising candidates for active elements in spintronic devices. Here, we demonstrate manipulation of the Neel vector in the metallic collinear antiferromagnet Mn2Au by combining strain and femtosecond laser excitation. Applying tensile strain along either of the two in-plane easy axes and locally exciting the sample by a train of femtosecond pulses, we align the Neel vector along the direction controlled by the applied strain. The dependence on the laser fluence and strain suggests the alignment is a result of optically triggered depinning of 90 degrees domain walls and their motion in the direction of the free energy gradient, governed by the magneto-elastic coupling. The resulting, switchable state is stable at room temperature and insensitive to magnetic fields. Such an approach may provide ways to realize robust high-density memory device with switching time scales in the picosecond range.

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Type
research article
DOI
10.1021/acsnano.2c07453
Web of Science ID

WOS:000890518200001

Author(s)
Grigorev, Vladimir
Filianina, Mariia
Lytvynenko, Yaryna
Sobolev, Sergei
Pokharel, Amrit Raj
Lanz, Amon P.
Sapozhnik, Alexey  
Kleibert, Armin
Bodnar, Stanislav
Grigorev, Petr
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Date Issued

2022-11-21

Publisher

AMER CHEMICAL SOC

Published in
Acs Nano
Volume

16

Issue

12

Start page

20589

End page

20597

Subjects

Chemistry, Multidisciplinary

•

Chemistry, Physical

•

Nanoscience & Nanotechnology

•

Materials Science, Multidisciplinary

•

Chemistry

•

Science & Technology - Other Topics

•

Materials Science

•

antiferromagnetic spintronics

•

optical manipulation of staggered magnetization

•

domain wall dynamics

•

deptuilillg transition

•

strain

•

metallic antiferromagnets

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LUMES  
Available on Infoscience
January 2, 2023
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/193595
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