Multiferroics Project, Exploratory Research for Advanced Technology, Japan Science and Technology Agency, Tokyo 113-8656, Japan.
Nat Mater. 2011 Feb;10(2):106-9. doi: 10.1038/nmat2916. Epub 2010 Dec 5.
The skyrmion, a vortex-like spin-swirling object, is anticipated to play a vital role in quantum magneto-transport processes such as the quantum Hall and topological Hall effects. The existence of the magnetic skyrmion crystal (SkX) state was recently verified experimentally for MnSi and Fe(0.5)Co(0.5)Si by means of small-angle neutron scattering and Lorentz transmission electron microscopy. However, to enable the application of such a SkX for spintronic function, materials problems such as a low crystallization temperature and low stability of SkX have to be overcome. Here we report the formation of SkX close to room temperature in thin-films of the helimagnet FeGe. In addition to the magnetic twin structure, we found a magnetic chirality inversion of the SkX across lattice twin boundaries. Furthermore, for thin crystal plates with thicknesses much smaller than the SkX lattice constant (as) the two-dimensional SkX is quite stable over a wide range of temperatures and magnetic fields, whereas for quasi-three-dimensional films with thicknesses over as the SkX is relatively unstable and observed only around the helical transition temperature. The room-temperature stable SkX state as promised by this study will pave a new path to designing quantum-effect devices based on the controllable skyrmion dynamics.
斯格明子,一种旋涡状的自旋涡旋物体,预计将在量子磁输运过程中发挥重要作用,如量子霍尔效应和拓扑霍尔效应。最近通过小角中子散射和洛伦兹透射电子显微镜实验证实了 MnSi 和 Fe(0.5)Co(0.5)Si 中存在磁斯格明子晶体(SkX)态。然而,为了使这种 SkX 能够应用于自旋电子学功能,必须克服材料问题,如低结晶温度和 SkX 的低稳定性。在这里,我们报告了在稀磁半导体 FeGe 的薄膜中接近室温下形成 SkX。除了磁孪晶结构,我们还发现 SkX 在晶格孪晶边界处发生了磁手性反转。此外,对于厚度远小于 SkX 晶格常数(as)的薄晶体板,二维 SkX 在很宽的温度和磁场范围内非常稳定,而对于厚度超过 as 的准三维薄膜,SkX 相对不稳定,仅在螺旋转变温度附近观察到。本研究中所承诺的室温稳定 SkX 状态将为基于可控制的斯格明子动力学的量子效应器件设计开辟新途径。