论文标题

调整尺寸尺寸的手性磁铁绝缘子颗粒中的拓扑自旋纹理

Tuning topological spin textures in size-tailored chiral magnet insulator particles

论文作者

Baral, Priya R., Ukleev, Victor, LaGrange, Thomas, Cubitt, Robert, Zivkovic, Ivica, Ronnow, Henrik M., White, Jonathan S., Magrez, Arnaud

论文摘要

拓扑自旋纹理(例如Skyrmions)具有很高的潜力,可以用作近距离应用的磁性元素。在这种情况下,金属多层的天空吸引了极大的关注,从而释放了各种应用的天空潜力,需要发现和自定义替代宿主系统范式。在这里,我们开发并应用了一种化学方法来合成手性绝缘的八面体颗粒,它们具有狭窄的尺寸分布,并且量身定制的尺寸接近纳米级。将磁力测定法和中子散射实验与微磁模拟相结合,我们表明CU2OSEO3的批量相图在400 nm的八面体高度以下急剧变化。在较低的临界八人体高度约为较低的临界高度之前,可以识别出进一步的粒度依赖性方案,例如天空,梅隆和浮子等各种拓扑自旋纹理。 190 nm以下未发现拓扑质地稳定。这些发现表明,局限于手性磁铁纳米颗粒的稀疏拓扑自旋纹理可以稳定,并为基于绝缘体的应用范式提供新的潜力。

Topological spin textures such as skyrmions hold high potential for use as magnetically active elements in diverse near-future applications. While skyrmions in metallic multilayers attract great attention in this context, unleashing the myriad potential of skyrmions for various applications requires the discovery and customization of alternative host system paradigms. Here we developed and applied a chemical method to synthesize octahedral particles of the chiral insulating skyrmion host Cu2OSeO3 with both narrow size distribution, and tailored dimensions approaching the nanoscale. Combining magnetometry and neutron scattering experiments with micromagnetic simulations, we show that the bulk phase diagram of Cu2OSeO3 changes dramatically below octahedral heights of 400 nm. Further particle size-dependent regimes are identified where various topological spin textures such as skyrmions, merons and bobbers can stabilize, prior to a lower critical octahedral height of approx. 190 nm below which no topological spin texture is found stable. These findings suggest conditions under which sparse topological spin textures confined to chiral magnet nanoparticles can be stable, and provide fresh potential for insulator-based application paradigms.

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