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混合赝铁电体:一种可控的极化-磁化耦合机制。

Hybrid improper ferroelectricity: a mechanism for controllable polarization-magnetization coupling.

机构信息

School of Applied and Engineering Physics, Cornell University, Ithaca, New York 14853, USA.

出版信息

Phys Rev Lett. 2011 Mar 11;106(10):107204. doi: 10.1103/PhysRevLett.106.107204. Epub 2011 Mar 7.

Abstract

First-principles calculations are presented for the layered perovskite Ca3Mn2O7. The results reveal a rich set of coupled structural, magnetic, and polar domains in which oxygen octahedron rotations induce ferroelectricity, magnetoelectricity, and weak ferromagnetism. The key point is that the rotation distortion is a combination of two nonpolar modes with different symmetries. We use the term "hybrid" improper ferroelectricity to describe this phenomenon and discuss how control over magnetism is achieved through these functional antiferrodistortive octahedron rotations.

摘要

本文对层状钙钛矿 Ca3Mn2O7 进行了第一性原理计算。结果表明,在该材料中存在丰富的耦合结构、磁学和极性畴,其中氧八面体的旋转诱导了铁电性、磁电效应和弱铁磁性。关键之处在于该旋转畸变是两种不同对称性的非极性模的组合。我们使用“杂化”的非中心对称铁电性来描述这一现象,并讨论了如何通过这些功能性反铁电八面体旋转来实现对磁性的控制。

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