论文标题

在FEGE中施加的应变下增强的天际敏化性

Enhanced skyrmion metastability under applied strain in FeGe

论文作者

Littlehales, M. T., Turnbull, L. A., Wilson, M. N., Birch, M. T., Popescu, H., Jaouen, N., Verezhak, J. A. T., Balakrishnan, G., Hatton, P. D.

论文摘要

Skyrmion宿主材料的机械扭曲以前已经证明了通过Skyrmion平衡口袋的扩展来提高相位稳定性。另外,可以通过快速的场冷却来产生亚稳态的天空,以在低温下形成大量的天际人群。使用小角度X射线散射和X射线全息成像在200 nm厚的Fege Lamella上,我们观察到温度诱导的应变对天际晶格的结构和亚稳定性的影响。我们发现,在该样品方向(H || [1 1 0])中,没有应变的,亚稳态的天空,这是通过平衡的天空袋中的场冷却产生的,当掉落在众所周知的螺旋重新定向温度以下时,从样品中消失了。但是,当沿[110]轴施加压力并重复该过程时,在冷却以下时,在该温度以下的冷却时,大幅度的亚稳态始终持续到100 k。此外,我们观察到在完全磁场极性逆转后保留了大量的天空电源,这表明稳定的能量屏障保护了降低的能源障碍,可保护降落的天空。

Mechanical straining of skyrmion hosting materials has previously demonstrated increased phase stability through the expansion of the skyrmion equilibrium pocket. Additionally, metastable skyrmions can be generated via rapid field-cooling to form significant skyrmion populations at low temperatures. Using small-angle x-ray scattering and x-ray holographic imaging on a thermally strained 200 nm thick FeGe lamella, we observe temperature-induced strain effects on the structure and metastability of the skyrmion lattice. We find that in this sample orientation (H || [1 1 0]) with no strain, metastable skyrmions produced by field cooling through the equilibrium skyrmion pocket vanish from the sample upon dropping below the well known helical reorientation temperature. However, when strain is applied along [110] axis, and this procedure is repeated, a substantial volume fraction of metastable skyrmions persist upon cooling below this temperature down to 100 K. Additionally, we observe a large number of skyrmions retained after a complete magnetic field polarity reversal, implying that the metastable energy barrier protecting skyrmions from decay is enhanced.

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