Antiferromagnetic spintronics

Антиферромагнитный спинтроникс
Teruo Ono, Takahiro Moriyama, V. Baltz, Aurélien Manchon, Maxim Tsoi, Yaroslav Tserkovnyak
2018-02-15

antiferromagnetic spintronicsantiferromagnetsexperimental designspredictive modelsspintronic effects
Spintronics utilizing antiferromagnetic materials has potential for the next generation of applications and offers opportunities for new ideas. Ultimately, antiferromagnets could replace ferromagnets as the active spin-dependent element on which spintronic devices are based. Central to this endeavor is the need for predictive models, relevant disruptive materials, and new experimental designs. This paper reviews spintronic effects described based on theoretical and experimental analysis of antiferromagnetic materials.
1
Antiferromagnetic materials have the potential to replace ferromagnets as the active spin-dependent element in future spintronic devices.
2
Identifying disruptive antiferromagnetic materials is central to advancing antiferromagnetic spintronics applications.
3
New experimental designs are necessary to observe and exploit spintronic effects in antiferromagnetic materials.
4
Realizing antiferromagnetic spintronics requires development of predictive theoretical models specific to antiferromagnets.
5
The paper synthesizes theoretical and experimental analyses of spintronic effects in antiferromagnets to guide future research.

Antiferromagnetic materials used in spintronic devices

Spintronic effects, mechanisms, and device-relevant behaviors (including modeling, materials properties, and experimental manifestations) of antiferromagnetic materials

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Publication Date
2018-02-15
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Authors
Teruo Ono
Takahiro Moriyama
V. Baltz
Aurélien Manchon
Maxim Tsoi
Yaroslav Tserkovnyak
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