单相磁电多铁氧化物的研究进展

Jae-Hyeon Cho, W. Jo
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引用次数: 1

摘要

磁电多铁体表现出铁磁性和铁电序的共存和耦合,由于其令人着迷的物理行为和可能的新应用而引起了广泛的兴趣。在本文中,我们重点介绍了单相ME多铁氧化物的研究进展,根据铁性质的物理来源进行分类,并针对每种情况给出相应的例子,即按材料分类,以及它们的ME多铁性质,包括饱和磁化、自发极化、(反)铁磁/铁电转变温度和ME系数。以磁电随机存取存储器和多铁性光伏为例,介绍了具有较高期望的磁电主动应用。此外,我们从材料开发和应用设计两方面考虑了目前的研究现状,讨论了ME多铁氧化物的发展方向。我们相信这篇简短的综述将为新进入该领域的研究人员提供一个基本的介绍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Progress in the Development of Single-Phase Magnetoelectric Multiferroic Oxides
Magnetoelectric (ME) multiferroics manifesting the coexistence and the coupling of ferromagnetic and ferroelectric order are appealing widespread interest owing to their fascinating physical behaviors and possible novel applications. In this review, we highlight the progress in single-phase ME multiferroic oxides research in terms of the classification depending on the physical origins of ferroic properties and the corresponding examples for each case, i.e., material by material, along with their ME multiferroic properties including saturation magnetization, spontaneous polarization, (anti)ferromagnetic/ferroelectric transition temperature, and ME coefficient. The magnetoelectrically-active applications of high expectancy are presented by citing the representative examples such as magnetoelectric random-access-memory and multiferroic photovoltaics. Furthermore, we discuss how the development of ME multiferroic oxides should proceed by considering the current research status in terms of developed materials and designed applications. We believe that this short review will provide a basic introduction for the researchers new to this field.
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