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纳米尺度混合相多铁体中的电控自发磁化。

Electrically controllable spontaneous magnetism in nanoscale mixed phase multiferroics.

机构信息

Department of Physics, University of California, Berkeley, California 94720, USA.

出版信息

Nat Commun. 2011;2:225. doi: 10.1038/ncomms1221.

Abstract

Magnetoelectrics and multiferroics present exciting opportunities for electric-field control of magnetism. However, there are few room-temperature ferromagnetic-ferroelectrics. Among the various types of multiferroics the bismuth ferrite system has received much attention primarily because both the ferroelectric and the antiferromagnetic orders are quite robust at room temperature. Here we demonstrate the emergence of an enhanced spontaneous magnetization in a strain-driven rhombohedral and super-tetragonal mixed phase of BiFeO₃. Using X-ray magnetic circular dichroism-based photoemission electron microscopy coupled with macroscopic magnetic measurements, we find that the spontaneous magnetization of the rhombohedral phase is significantly enhanced above the canted antiferromagnetic moment in the bulk phase, as a consequence of a piezomagnetic coupling to the adjacent tetragonal-like phase and the epitaxial constraint. Reversible electric-field control and manipulation of this magnetic moment at room temperature is also shown.

摘要

磁电和多铁性为磁场的电场控制提供了令人兴奋的机会。然而,室温铁磁-铁电体很少。在各种类型的多铁性材料中,铋铁氧体体系受到了广泛关注,主要是因为铁电和反铁磁有序在室温下相当稳定。在这里,我们展示了应变驱动的三方和超四方混合相 BiFeO₃中增强的自发磁化的出现。通过结合宏观磁性测量的基于 X 射线磁圆二色性的光发射电子显微镜,我们发现,由于与相邻四方类似相的压磁耦合和外延约束,三方相的自发磁化明显增强了体相中倾斜的反铁磁矩。还展示了室温下这种磁矩的可逆电场控制和操作。

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