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Ptychographic imaging and micromagnetic modeling of thermal melting of nanoscale magnetic domains in antidot lattices

机译:纳米级磁畴的PTYCHOGUAG成像和微磁质模型

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Antidot lattices are potential candidates to act as bit patterned media for data storage as they are able to trap nanoscale magnetic domains between two adjacent holes. Here, we demonstrate the combination of micromagnetic modeling and x-ray microscopy. Detailed simulation of these systems can only be achieved by micromagnetic modeling that takes thermal effects into account. For this purpose, a Landau–Lifshitz–Bloch approach is used here. The calculated melting of magnetic domains within the antidot lattice is reproduced experimentally by x-ray microscopy. Furthermore, we compare conventional scanning transmission x-ray microscopy with resolution enhanced ptychography. Hence, we achieve a resolution of 13 nm. The results demonstrate that ptychographic imaging can also recover magnetic contrast in the presence of a strong topological variation and is generally applicable toward magnetic samples requiring ultimate resolution.
机译:反向器格子是潜在的候选者,以使数据存储的位图案化介质充当数据存储,因为它们能够在两个相邻孔之间捕获纳米级磁畴。在这里,我们证明了微磁性建模和X射线显微镜的组合。这些系统的详细模拟只能通过微磁模型实现,以考虑热效应。为此,这里使用Landau-Lifshitz-Bloch方法。通过X射线显微镜检查通过X射线显微镜再现测试物晶片内的磁性域的熔化。此外,我们将常规扫描传输X射线显微镜与分辨率的增强型PTYChogum进行比较。因此,我们达到了13纳米的分辨率。结果表明,Ptychraup成像还可以在强大的拓扑变化存在下回收磁对比,并且通常适用于需要最终分辨率的磁性样品。

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