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A Novel Method for the Injection and Manipulation of Magnetic Charge States in Nanostructures

机译:一种新的纳米结构磁荷电荷注入和操纵方法

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摘要

Realising the promise of next-generation magnetic nanotechnologies is contingent on the development of novel methods for controlling magnetic states at the nanoscale. There is currently demand for simple and flexible techniques to access exotic magnetisation states without convoluted fabrication and application processes. 360° domain walls (metastable twists in magnetisation separating two domains with parallel magnetisation) are one such state, which is currently of great interest in data storage and magnonics. Here, we demonstrate a straightforward and powerful process whereby a moving magnetic charge, provided experimentally by a magnetic force microscope tip, can write and manipulate magnetic charge states in ferromagnetic nanowires. The method is applicable to a wide range of nanowire architectures with considerable benefits over existing techniques. We confirm the method’s efficacy via the injection and spatial manipulation of 360° domain walls in Py and Co nanowires. Experimental results are supported by micromagnetic simulations of the tip-nanowire interaction.
机译:实现下一代磁性纳米技术的前景取决于控制纳米级磁态的新方法的发展。当前需要简单而灵活的技术来访问奇特的磁化状态而又不使制造和应用过程复杂化。一种这样的状态就是360°磁畴壁(磁化中的可观扭曲将两个磁畴以平行磁化的方式隔开),目前在数据存储和磁强学中引起了极大的兴趣。在这里,我们演示了一个简单而强大的过程,通过此过程,磁力显微镜尖端通过实验提供的移动电荷可以写入和操纵铁磁纳米线上的电荷状态。该方法适用于广泛的纳米线架构,与现有技术相比具有显着优势。我们通过对Py和Co纳米线中360°畴壁的注入和空间操作来确认该方法的有效性。尖端-纳米线相互作用的微磁模拟支持了实验结果。

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