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多铁性材料MnWO₄中具有共线自旋结构的非极性相的磁电记忆效应。

Magnetoelectric memory effect of the nonpolar phase with collinear spin structure in multiferroic MnWO4.

作者信息

Taniguchi K, Abe N, Ohtani S, Arima T

机构信息

Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, Sendai 980-8577, Japan.

出版信息

Phys Rev Lett. 2009 Apr 10;102(14):147201. doi: 10.1103/PhysRevLett.102.147201. Epub 2009 Apr 8.

Abstract

The novel memory effect of a nonpolar paraelectric phase with a collinear spin structure has been observed in a magnetoelectric multiferroic material MnWO4. Since the ferroelectric polarization arises from a noncollinear spin structure, in a new class of magnetoelectric multiferroic materials with a spiral-spin structure, the information of ferroelectric domains should be lost in the collinear spin phase. However, in MnWO4, it has been found that the domain states in the ferroelectric phase are memorized even in the nonpolar phase with a collinear spin structure, when the phase transition is of the first-order type. Here we demonstrate a magnetoelectric memory effect that the ferroelectric single-domain state can be reproduced from the paraelectric phase by a magnetic field. We propose the nuclei growth model, in which the small ferroelectric embryos keep the polarization state in the nonpolar collinear spin phase.

摘要

在磁电多铁性材料MnWO₄中观察到了具有共线自旋结构的非极性顺电相的新型记忆效应。由于铁电极化源于非共线自旋结构,在一类具有螺旋自旋结构的新型磁电多铁性材料中,铁电畴信息在共线自旋相中将丢失。然而,在MnWO₄中发现,当相变是一级相变类型时,即使在具有共线自旋结构的非极性相中,铁电相中的畴态也会被记忆。在此,我们展示了一种磁电记忆效应,即通过磁场可以从顺电相中重现铁电单畴态。我们提出了核生长模型,其中小的铁电胚胎在非极性共线自旋相中保持极化状态。

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