涡流
自旋电子学
电场
物理
磁场
多铁性
机械
磁能
凝聚态物理
磁化
铁磁性
光电子学
量子力学
电介质
铁电性
作者
Yuelin Zhang,Chuanshou Wang,Houbing Huang,Jingdi Lu,Renrong Liang,Jian Liu,Ren‐Ci Peng,Qintong Zhang,Qinghua Zhang,Jing Wang,Lin Gu,Xiu-Feng Han,Long‐Qing Chen,R. Ramesh,Ce‐Wen Nan,Jinxing Zhang
出处
期刊:Science Bulletin
[Elsevier BV]
日期:2020-04-08
卷期号:65 (15): 1260-1267
被引量:25
标识
DOI:10.1016/j.scib.2020.04.008
摘要
Abstract The ability to control magnetic vortex is critical for their potential applications in spintronic devices. Traditional methods including magnetic field, spin-polarized current etc. have been used to flip the core and/or reverse circulation of vortex. However, it is challenging for deterministic electric-field control of the single magnetic vortex textures with time-reversal broken symmetry and no planar magnetic anisotropy. Here it is reported that a deterministic reversal of single magnetic vortex circulation can be driven back and forth by a space-varying strain in multiferroic heterostructures, which is controlled by using a bi-axial pulsed electric field. Phase-field simulation reveals the mechanism of the emerging magnetoelastic energy with the space variation and visualizes the reversal pathway of the vortex. This deterministic electric-field control of the single magnetic vortex textures demonstrates a new approach to integrate the low-dimensional spin texture into the magnetoelectric thin film devices with low energy consumption.
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