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Stochastic vs. deterministic magnetic coding in designed cylindrical nanowires for 3D magnetic networks

机译:随机和确定的磁编码圆柱形纳米线为3 d设计的磁性网络

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摘要

Advances in cylindrical nanowires for 3D information technologies profit from intrinsic curvature that introduces significant differences with regards to planar systems. A model is proposed to control the stochastic and deterministic coding of remanent 3D complex vortex configurations in designed multilayered (magnetic/non-magnetic) cylindrical nanowires. This concept, introduced by micromagnetic simulations, is experimentally confirmed by magnetic imaging in FeCo/Cu multilayered nanowires. The control over the random/deterministic vortex states configurations is achieved by a suitable geometrical interface tilting of almost non-interacting FeCo segments with respect to the nanowire axis, together with the relative orientation of the perpendicular magnetic field. The proper design of the segments' geometry (e.g. tilting) in cylindrical nanowires opens multiple opportunities for advanced nanotechnologies in 3D magnetic networks.
机译:圆柱形纳米线对3 d的进步信息技术从内在中获利曲率,介绍了显著差异关于平面系统。提出控制随机确定性编码剩余3 d复杂在设计多层涡配置(磁性或非磁性)圆柱纳米线。这个概念,引入了微磁仿真实验证实了磁成像在摘要/铜多层纳米线。随机/确定性涡状态配置是通过一个合适的几何界面吗倾斜几乎毫无关系的摘要部分对纳米丝轴,在一起的相对方向垂直磁场。在圆柱段的几何形状(如倾斜)纳米线打开多个机会先进的纳米技术在三维磁网络。

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