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Sophisticated process for a spin-torque device fabricated from a pillar containing two different ferromagnetic materials separated by a non-magnetic layer

机译:由包含由非磁性层分隔的两种不同铁磁材料的柱子制造的自旋扭矩装置的复杂工艺

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摘要

Since several years, devices allowing for spin manipulation in ferromagnetic layers are the subject of intensive research (e.g., Ralph and Stiles (2008) ). A pillar with sub-micrometer dimensions fabricated from a stack of various materials containing two or more ferromagnetic layers separated with a spacer very often serves as a core of devices suitable for investigation of spin torque phenomena. Here we describe a reliable fabrication process for such pillars emphasizing precautions which have to be taken to protect pillar side walls from surface conductivity thereby increasing the percentage of the structures revealing magnetic field/current induced switching events.
机译:多年来,允许在铁磁层中进行自旋操纵的设备一直是深入研究的主题(例如Ralph and Stiles(2008))。由各种材料堆叠而成的亚微米尺寸的柱体,通常包含两个或多个铁磁层,这些铁磁层之间用垫片隔开,这些柱子经常用作适合研究自旋扭矩现象的装置的核心。在此,我们描述了一种用于此类立柱的可靠制造工艺,其中强调了必须采取的预防措施,以保护立柱侧壁不受表面电导率的影响,从而增加揭示磁场/电流感应开关事件的结构百分比。

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