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Chin. Phys. B, 2016, Vol. 25(6): 067502    DOI: 10.1088/1674-1056/25/6/067502
Special Issue: TOPICAL REVIEW — Low-dimensional complex oxide structures
TOPICAL REVIEW—Low-dimensional complex oxide structures Prev   Next  

Electrical control of magnetism in oxides

Cheng Song(宋成), Bin Cui(崔彬), Jingjing Peng(彭晶晶), Haijun Mao(毛海军), Feng Pan(潘峰)
Key Laboratory of Advanced Materials (MOE), School of Materials Science and Engineering, Tsinghua University, Beijing 100084, China
Abstract  

Recent progress in the electrical control of magnetism in oxides, with profound physics and enormous potential applications, is reviewed and illustrated. In the first part, we provide a comprehensive summary of the electrical control of magnetism in the classic multiferroic heterostructures and clarify the various mechanisms lying behind them. The second part focuses on the novel technique of electric double layer gating for driving a significant electronic phase transition in magnetic oxides by a small voltage. In the third part, electric field applied on ordinary dielectric oxide is used to control the magnetic phenomenon originating from charge transfer and orbital reconstruction at the interface between dissimilar correlated oxides. At the end, we analyze the challenges in electrical control of magnetism in oxides, both the mechanisms and practical applications, which will inspire more in-depth research and advance the development in this field.

Keywords:  electrical control of magnetism      oxide      magnetoelectric coupling      heterostructure  
Received:  15 August 2015      Revised:  04 September 2015      Accepted manuscript online: 
PACS:  75.47.Lx (Magnetic oxides)  
  75.70.-i (Magnetic properties of thin films, surfaces, and interfaces)  
  75.85.+t (Magnetoelectric effects, multiferroics)  
  77.55.Nv (Multiferroic/magnetoelectric films)  
Fund: 

Project supported by the National Natural Science Foundation of China (Grant Nos. 51322101, 51202125, and 51231004) and the National Hi-tech Research and Development Project of China (Grant Nos. 2014AA032904 and 2014AA032901).

Corresponding Authors:  Cheng Song     E-mail:  songcheng@mail.tsinghua.edu.cn

Cite this article: 

Cheng Song(宋成), Bin Cui(崔彬), Jingjing Peng(彭晶晶), Haijun Mao(毛海军), Feng Pan(潘峰) Electrical control of magnetism in oxides 2016 Chin. Phys. B 25 067502

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