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Field operating window of nanodevices employing the domain wall propagation through the stripes intersection: Numerical optimization

机译:利用畴壁通过条纹相交传播的纳米器件的现场操作窗口:数值优化

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In this paper, we present the detailed numerical study of domain wall (DW) dynamics in thin magnetic stripes and in nanostructures containing intersections of such stripes. We focus on the DW propagation through these intersections (crosses), because these are the key elements in field-based multiturn sensors and magnetic logic devices. The DW propagation through such intersections is the main problem by ensuring the functional reliability of the abovementioned devices due to (i) the strong pinning of a DW at these crosses and (ii) the risk that a wrong cross "shoulder" is reversed by the DW propagation. By means of micromagnetic simulations, the operating field range for the desired DW propagation in devices with a constant stripe width is determined, and the drawbacks of this simple design are discussed. To overcome these drawbacks, we suggest a new design employing the stripes with a modulated width. We show that sensors with this design are expected to have a higher reliability and that their field operating window can be controlled in a more flexible way. Published by AIP Publishing.
机译:在本文中,我们提供了细磁条和包含此类磁条交叉点的纳米结构中畴壁(DW)动力学的详细数值研究。我们将重点放在通过这些交叉点(交叉点)的DW传播上,因为这些是基于场的多匝传感器和磁逻辑器件中的关键要素。通过这样的交叉点传播的DW是通过确保上述设备的功能可靠性而引起的主要问题,这是由于(i)DW在这些交叉点处的牢固钉扎以及(ii)错误的交叉点“肩膀”被颠倒的风险通过DW传播。通过微磁模拟,确定了条带宽度恒定的设备中所需DW传播的工作场范围,并讨论了这种简单设计的缺点。为了克服这些缺点,我们建议采用采用调制宽度的条纹的新设计。我们证明,采用这种设计的传感器有望具有更高的可靠性,并且可以以更加灵活的方式来控制其现场操作窗口。由AIP Publishing发布。

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