自旋电子学
凝聚态物理
反铁磁性
磁化
材料科学
多铁性
磁场
电场
异质结
铁磁性
拓扑(电路)
金属间化合物
焦耳加热
电阻率和电导率
极化密度
物理
磁铁
拓扑绝缘体
领域(数学)
相(物质)
电流
磁性
相变
作者
Zexin Feng,Han Yan,Zhiqi Liu
标识
DOI:10.1002/aelm.201800466
摘要
Abstract Using an electric field instead of an electric current (or a magnetic field) to tailor the electronic properties of magnetic materials is promising for realizing ultralow‐energy‐consuming memory devices because of the suppression of Joule heating, especially when the devices are scaled down to the nanoscale. Here, recent results on giant magnetization and resistivity modulation in a metamagnetic intermetallic alloy, FeRh, which is achieved by electric‐field‐controlled magnetic phase transitions in multiferroic heterostructures are summarized. Furthermore, this approach is extended to topological antiferromagnetic spintronics, which is currently receiving attention in the magnetic society. Furthermore, the antiferromagnetic order parameter can switch back and forth via a small electric field. In the end, the possibility of manipulating exotic physical phenomena in the emerging topological antiferromagnetic spintronics field via the electric‐field approach is envisioned.
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