论文标题
观察短期螺旋旋转顺序和非手续中心对称Helimagnet中的磁过渡
Observation of short-period helical spin order and magnetic transition in a non-chiral centrosymmetric helimagnet
论文作者
论文摘要
出现纳米级螺旋顺序的材料的搜索继续受到新兴电感器的承诺的推动。尽管已经在许多材料中报道了这种自旋纹理,但其中大多数表现出很长时间或仅限于室温远低于室温。在这里,我们介绍了在室温下通过多角度和洛伦兹透射透射电子显微镜(TEM)的多齐达方法,在室温下,在室温下,在室温下,在室温下,在室温下,在室温下,对有序的螺旋自旋顺序进行了实际空间观察。原位中子粉末衍射和Lorentz TEM清楚地揭示了从有序的螺旋旋转顺序到低于228 K的循环旋转顺序的磁性跃迁,这与温度诱导的磁晶体延伸性各向异性的变化密切相关。这些结果揭示了非手续性中心对称Helimagnet中螺旋有序的自旋纹理的起源,该旋转质质量可以作为搜索具有纳米级旋转序列的材料的新策略,并具有潜在的新兴电磁作用。
The search for materials exhibiting nanoscale spiral order continues to be fuelled by the promise of emergent inductors. Although such spin textures have been reported in many materials, most of them exhibit long periods or are limited to operate far below room temperature. Here, we present the real-space observation of an ordered helical spin order with a period of 3.2 nm in a non-chiral centrosymmetric helimagnet MnCoSi at room temperature via multi-angle and multi-azimuth approach of Lorentz transmission electron microscopy (TEM). A magnetic transition from the ordered helical spin order to a cycloidal spin order below 228 K is clearly revealed by in situ neutron powder diffraction and Lorentz TEM, which is closely correlated with temperature-induced variation in magneto-crystalline anisotropy. These results reveal the origin of spiral ordered spin textures in non-chiral centrosymmetric helimagnet, which can serve as a new strategy for searching materials with nanoscale spin order with potential applications in emergent electromagnetism.