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Correlation between antiferromagnetic interface coupling and positive exchange bias

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TLDR
In this article, the induced moment in antiferromagnetic (AFM)-ferromagnetic bilayers has been studied from the shift along the magnetization axis of the exchange-biased hysteresis loops.
Abstract
The induced moment in antiferromagnetic (AFM)--ferromagnetic (FM) $({\mathrm{FeF}}_{2}\ensuremath{-}\mathrm{Fe}$ and ${\mathrm{MnF}}_{2}\ensuremath{-}\mathrm{Fe})$ bilayers has been studied from the shift along the magnetization axis of the exchange-biased hysteresis loops. The magnetization shift depends strongly on the cooling field and microstructure of the AFM layer. The shift for small cooling fields can be opposite to the cooling field, indicating that, in some cases, the presence of the FM layer induces an antiferromagnetic coupling at the interface. Samples with negative magnetization shifts (antiferromagnetic coupling) exhibit large changes in exchange bias ${H}_{E}$ as a function of cooling field and positive exchange bias. Samples with positive magnetization shifts (ferromagnetic coupling) show almost no change in ${H}_{E}$ with cooling field and the exchange bias field remains always negative. These results confirm the theoretical assumption that an antiferromagnetic interface coupling is necessary to observe positive exchange bias.

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Journal ArticleDOI

Exchange bias in nanostructures

TL;DR: The phenomenology of exchange bias and related effects in nanostructures is reviewed in this paper, where the main applications of exchange biased nanostructure are summarized and the implications of the nanometer dimensions on some of the existing exchange bias theories are briefly discussed.
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Exchange bias theory

TL;DR: A review of the most salient experimental results and what is required from an EB theory is given in this article, where the main body of the text reviews and critically discusses the activity that has flourished, mainly during the last 5 years, in the theoretical front.
Journal ArticleDOI

Mechanisms for exchange bias

TL;DR: In this article, a general theoretical formulation of the bias problem is proposed, and an expression for the interface energy is derived, with particular emphasis on the roles of interface structure and temperature.
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Exchange bias effect in alloys and compounds

TL;DR: The phenomenology of exchange bias effects observed in structurally single-phase alloys and compounds but composed of a variety of coexisting magnetic phases such as ferromagnetic, antiferromagnetic.
Journal ArticleDOI

Synthesis and size-dependent exchange bias in inverted core-shell MnO|Mn3O4 nanoparticles.

TL;DR: Core-shell nanoparticles of MnO|Mn3O4 with average particle sizes of 5-60 nm, composed of an antiferromagnetic (AFM) core and a ferrimagnetic (FiM) shell, have been synthesized and their magnetic properties investigated.
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