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Tuning of current-induced effective magnetic field through Rashba effect engineering in hybrid multiferroic structures

机译:通过Rashba效应工程对混合多铁性结构中的电流感应有效磁场进行调谐

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摘要

Current-induced effective magnetic fields offer a new pathway through spin orbit interaction (SOI) to switch magnetization and have recently attracted great interest. In the conventional heavy metal/ferromagnetic metal/oxide (HM/FM/Oxide) structure, significant efforts have been made to study the role of the HM in determining effective magnetic fields. However, very little attention has been paid to the oxide layer and its interface with FM, where the Rashba effect may affect the effective field. In this report, we present a pathway to tune the effective magnetic field by engineering the Rashba effect in a hybrid multiferroic multilayer structure. A ferroelectric oxide of BaTiO3, whose polarizations either up or down are controlled by interface engineering, was introduced into the conventional SOI multilayer with the structure of BaTiO3/CoFeB/Pt. The current-induced effective magnetic fields increase by more than 200% when the ferroelectric polarization of BaTiO3 changes from up to down. The changes in the effective magnetic field are mainly attributed to the different Rashba effective fields induced by the opposite ferroelectric polarizations. Our study offers a new path towards controlling the current-induced effective magnetic field and may pave the way for integrating other functional oxides into the spintronic devices.
机译:电流感应的有效磁场提供了一种通过自旋轨道相互作用(SOI)来切换磁化强度的新途径,并且最近引起了人们的极大兴趣。在常规的重金属/铁磁性金属/氧化物(HM / FM /氧化物)结构中,已经做出了巨大的努力来研究HM在确定有效磁场中的作用。但是,很少关注氧化层及其与FM的界面,其中的Rashba效应可能会影响有效场。在这份报告中,我们提出了一种通过工程化混合多铁性多层结构中的Rashba效应来调谐有效磁场的途径。将BaTiO3的铁电氧化物通过界面工程控制其极化的向上或向下,将其引入具有BaTiO3 / CoFeB / Pt结构的常规SOI多层膜中。当BaTiO3的铁电极化从上到下变化时,电流感应的有效磁场增加200%以上。有效磁场的变化主要归因于由相反铁电极化引起的不同的拉什巴有效场。我们的研究为控制电流感应有效磁场提供了一条新途径,并可能为将其他功能性氧化物集成到自旋电子器件中铺平道路。

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