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Spin–orbit torque-assisted switching in magnetic insulator thin films with perpendicular magnetic anisotropy

机译:具有垂直磁各向异性的绝缘子薄膜的自旋轨道转矩辅助切换

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摘要

As an in-plane charge current flows in a heavy metal film with spin–orbit coupling, it produces a torque on and thereby switches the magnetization in a neighbouring ferromagnetic metal film. Such spin–orbit torque (SOT)-induced switching has been studied extensively in recent years and has shown higher efficiency than switching using conventional spin-transfer torque. Here we report the SOT-assisted switching in heavy metal/magnetic insulator systems. The experiments used a Pt/BaFe12O19 bilayer where the BaFe12O19 layer exhibits perpendicular magnetic anisotropy. As a charge current is passed through the Pt film, it produces a SOT that can control the up and down states of the remnant magnetization in the BaFe12O19 film when the film is magnetized by an in-plane magnetic field. It can reduce or increase the switching field of the BaFe12O19 film by as much as about 500 Oe when the film is switched with an out-of-plane field.
机译:当面内电荷电流通过自旋-轨道耦合在重金属膜中流动时,它会产生转矩,从而切换相邻铁磁金属膜中的磁化强度。近年来,对这种自旋轨道转矩(SOT)引起的切换进行了广泛的研究,并且显示出比使用常规自旋传递转矩的切换更高的效率。在这里,我们报告了重金属/磁绝缘系统中的SOT辅助开关。实验使用了一个Pt / BaFe12O19双层,其中BaFe12O19层表现出垂直的磁各向异性。当充电电流流过Pt膜时,它会产生一个SOT,当该膜被平面内磁场磁化时,该SOT可以控制BaFe12O19膜中剩余磁化的上下状态。当用平面外场切换薄膜时,它可以将BaFe12O19薄膜的切换场减小或增加多达500 Oe。

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