论文标题

各向异性在立方体性空中宿主中的重要作用

Vital role of anisotropy in cubic chiral skyrmion hosts

论文作者

Preißinger, M., Karube, K., Ehlers, D., Szigeti, B., von Nidda, H. -A. Krug, White, J. S., Ukleev, V., Rønnow, H. M., Tokunaga, Y., Kikkawa, A., Tokura, Y., Taguchi, Y., Kézsmárki, I.

论文摘要

磁各向异性对立方手性磁体中的天际晶格(SKL)状态的影响已被忽略了很长时间,部分原因是,可以在不引起偏见的远程障碍效果的情况下实现热力学稳定的SKL相位袋的半定量描述。然而,最近在这些材料中报道了一系列现象,例如,低温倾斜的圆锥形和SKL状态的形成以及温度诱导的晶格几何在亚稳态SKL状态下的转化,怀疑在其中怀疑会在其中起关键作用。为了在实验基础上解决这个问题,我们在一系列COZNMN型立方手性磁体中量化了立方各向异性。我们发现,各向异性的强度在所有化合物中都高度增强,不仅在改变CO/MN比率随着CO/MN的比率随着立方各向异性的幅度,而且立方各向异性的特征截然不同。我们将这些变化与螺旋调制向量的温度和组成诱导的变化相关,亚稳态SKL的非谐和性和结构重排以及自旋松弛速率。对磁各向异性的类似系统研究不仅可以为立方手性磁铁中稳定且可稳定的调制旋转纹理的定量和统一描述铺平道路,而且还将有助于探索这片大型天际宿主中进一步的拓扑自旋纹理。

The impact of magnetic anisotropy on the skyrmion lattice (SkL) state in cubic chiral magnets has been overlooked for long, partly because a semi-quantitative description of the thermodynamically stable SkL phase pocket forming near the Curie temperature could be achieved without invoking anisotropy effects. However, there has been a range of phenomena reported recently in these materials, such as the formation of low-temperature tilted conical and SkL states as well as temperature-induced transformations of lattice geometry in metastable SkL states, where anisotropy was suspected to play a key role. To settle this issue on experimental basis, we quantified the cubic anisotropy in a series of CoZnMn-type cubic chiral magnets. We found that the strength of anisotropy is highly enhanced towards low temperatures in all the compounds, moreover, not only the magnitude but also the character of cubic anisotropy drastically varies upon changing the Co/Mn ratio. We correlate these changes with temperature- and composition-induced variations of the helical modulation vectors, the anharmonicity and structural rearrangements of the metastable SkLs and the spin relaxation rates. Similar systematic studies on magnetic anisotropy may not only pave the way for a quantitative and unified description of the stable and metastable modulated spin textures in cubic chiral magnets but would also help exploring further topological spin textures in this large class of skyrmion hosts.

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