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Spontaneous exchange bias formation driven by a structural phase transition in the antiferromagnetic material.

Authors :
Migliorini A
Kuerbanjiang B
Huminiuc T
Kepaptsoglou D
Muñoz M
Cuñado JLF
Camarero J
Aroca C
Vallejo-Fernández G
Lazarov VK
Prieto JL
Source :
Nature materials [Nat Mater] 2018 Jan; Vol. 17 (1), pp. 28-35. Date of Electronic Publication: 2017 Nov 20.
Publication Year :
2018

Abstract

Most of the magnetic devices in advanced electronics rely on the exchange bias effect, a magnetic interaction that couples a ferromagnetic and an antiferromagnetic material, resulting in a unidirectional displacement of the ferromagnetic hysteresis loop by an amount called the 'exchange bias field'. Setting and optimizing exchange bias involves cooling through the Néel temperature of the antiferromagnetic material in the presence of a magnetic field. Here we demonstrate an alternative process for the generation of exchange bias. In IrMn/FeCo bilayers, a structural phase transition in the IrMn layer develops at room temperature, exchange biasing the FeCo layer as it propagates. Once the process is completed, the IrMn layer contains very large single-crystal grains, with a large density of structural defects within each grain, which are promoted by the FeCo layer. The magnetic characterization indicates that these structural defects in the antiferromagnetic layer are behind the resulting large value of the exchange bias field and its good thermal stability. This mechanism for establishing the exchange bias in such a system can contribute towards the clarification of fundamental aspects of this exchange interaction.

Details

Language :
English
ISSN :
1476-4660
Volume :
17
Issue :
1
Database :
MEDLINE
Journal :
Nature materials
Publication Type :
Academic Journal
Accession number :
29180774
Full Text :
https://doi.org/10.1038/nmat5030