Single-phase multiferroics: new materials, phenomena, and physics

Abstract Multiferroics, where multiple ferroic orders coexist and are intimately coupled, promise novel applications in conceptually new devices on one hand, and on the other hand provide fascinating physics that is distinctly different from the physics of high-TC superconductors and colossal magnet...

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Bibliographic Details
Published inNational science review Vol. 6; no. 4; pp. 653 - 668
Main Authors Lu, Chengliang, Wu, Menghao, Lin, Lin, Liu, Jun-Ming
Format Journal Article
LanguageEnglish
Published Oxford University Press 01.07.2019
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Summary:Abstract Multiferroics, where multiple ferroic orders coexist and are intimately coupled, promise novel applications in conceptually new devices on one hand, and on the other hand provide fascinating physics that is distinctly different from the physics of high-TC superconductors and colossal magnetoresistance manganites. In this mini-review, we highlight the recent progress of single-phase multiferroics in the exploration of new materials, efficient roadmaps for functionality enhancement, new phenomena beyond magnetoelectric coupling, and underlying novel physics. In the meantime, a slightly more detailed description is given of several multiferroics with ferrimagnetic orders and double-layered perovskite structure and also of recently emerging 2D multiferroics. Some emergent phenomena such as topological vortex domain structure, non-reciprocal response, and hybrid mechanisms for multiferroicity engineering and magnetoelectric coupling in various types of multiferroics will be briefly reviewed.
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ISSN:2095-5138
2053-714X
DOI:10.1093/nsr/nwz091