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具有螺旋自旋序的多铁性材料。

Multiferroics with spiral spin orders.

机构信息

Department of Applied Physics, University of Tokyo, Multiferroics Project, ERATO, Japan Science and Technology Agency, Tokyo, Japan.

出版信息

Adv Mater. 2010 Apr 12;22(14):1554-65. doi: 10.1002/adma.200901961.

Abstract

Cross correlation between magnetism and electricity in a solid can host magnetoelectric effects, such as magnetic (electric) induction of polarization (magnetization). A key to attain the gigantic magnetoelectric response is to find the efficient magnetism-electricity coupling mechanisms. Among those, recently the emergence of spontaneous (ferroelectric) polarization in the insulating helimagnet or spiral-spin structure was unraveled, as mediated by the spin-exchange and spin-orbit interactions. The sign of the polarization depends on the helicity (spin rotation sense), while the polarization direction itself depends on further details of the mechanism and the underlying lattice symmetry. Here, we describe some prototypical examples of the spiral-spin multiferroics, which enable some unconventional magnetoelectric control such as the magnetic-field-induced change of the polarization direction and magnitude as well as the electric-field-induced change of the spin helicity and magnetic domain.

摘要

固体中的磁电交叉可以产生磁电效应,例如极化(磁化)的磁(电)感应。实现巨大磁电响应的关键是找到有效的磁电耦合机制。在这些机制中,最近通过自旋交换和自旋轨道相互作用,在绝缘的手性磁体或螺旋自旋结构中发现了自发(铁电)极化的出现。极化的符号取决于螺旋性(自旋旋转方向),而极化方向本身取决于机制和基础晶格对称性的进一步细节。在这里,我们描述了一些螺旋自旋多铁性的典型例子,它们可以实现一些非传统的磁电控制,例如磁场引起的极化方向和强度的变化以及电场引起的自旋螺旋和磁畴的变化。

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