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Micromagnetic Investigation of the S-State Reconfigurable Logic Element

机译:S状态可重构逻辑元件的微磁探查

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摘要

Magnetic nanostructures are promising for nonvolatile data storage applications, as well as for reconfigurable logic devices. The derived magnetic logic concepts are commonly relying on the magnetostatic coupling of small ensembles or larger chains and networks of nanostructures. Recently, we presented a simple single-layer logic element based on an S-shaped geometry. This reconfigurable device can be integrated with magnetoresistive elements and is relatively simple to fabricate. We present a detailed micromagnetic analysis of the geometrical parameter space in which the logic element performs reliably. The influence of imperfections on the device characteristics, that is, sidewall roughness and roundedness of the edges, is investigated. Special attention is paid to obtain configurations with symmetric input field values.
机译:磁性纳米结构有望用于非易失性数据存储应用以及可重新配置的逻辑设备。派生的磁逻辑概念通常依赖于小型集成体或较大的纳米结构链和网络的静磁耦合。最近,我们提出了一个基于S形几何结构的简单单层逻辑元素。该可重新配置的设备可以与磁阻元件集成在一起,并且制造起来相对简单。我们对逻辑参数在其中可靠执行的几何参数空间进行了详细的微磁分析。研究了缺陷对器件特性的影响,即侧壁粗糙度和边缘的圆度。要特别注意获得具有对称输入字段值的配置。

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