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Fabrication of magnetic tunnel junctions connected through a continuous free layer to enable spin logic devices

机译:通过连续自由层连接的磁性隧道结的制造,以实现自旋逻辑器件

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Magnetic tunnel junctions (MTJs) interconnected via a continuous ferromagnetic free layer were fabricated for spin torque majority gate (STMG) logic. The MTJs are biased independently and show magnetoelectric response under spin transfer torque. The electrical control of these devices paves the way to future spin logic devices based on domain wall (DW) motion. In particular, it is a significant step towards the realization of a majority gate. To our knowledge, this is the first fabrication of a cross-shaped free layer shared by several perpendicular MTJs. The fabrication process can be generalized to any geometry and any number of MTJs. Thus, this framework can be applied to other spin logic concepts based on magnetic interconnect. Moreover, it allows exploration of spin dynamics for logic applications. (C) 2018 The Japan Society of Applied Physics.
机译:制作了通过连续铁磁自由层互连的磁隧道结(MTJ),用于自旋扭矩多数门(STMG)逻辑。 MTJ被独立偏置,并在自旋传递转矩下显示出磁电响应。这些设备的电气控制为基于域壁(DW)运动的未来自旋逻辑设备铺平了道路。特别是,这是朝着实现多数票制迈出的重要一步。据我们所知,这是首次制造由多个垂直MTJ共享的十字形自由层。可以将制造过程推广到任何几何形状和任意数量的MTJ。因此,该框架可以应用于基于磁性互连的其他自旋逻辑概念。此外,它还允许探索逻辑应用程序的自旋动力学。 (C)2018年日本应用物理学会。

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