论文标题
MNGE中的拓扑磁结构:中子衍射和对称分析
Topological magnetic structures in MnGe: Neutron diffraction and symmetry analysis
论文作者
论文摘要
从手性立方($ p2 {_1} 3 $)磁铁锰的新中子粉末衍射实验中,我们分析了从数据成功确定的所有可能的晶体对称性磁性超结构。发现磁性结构的不稳定的传播向量$ k $与[100]立方轴一致,并对应于1.8 k时约30 $Å$的磁性周期性。几种最大的结晶对称磁性结构可与数据均匀地拟合,并显示出数据。这些包括多$ K $立方或正骨3+3和正骨3+2尺寸磁性超空间组中的多$ K $立方或原骨架中的“ Skyrmion”结构,分别有可能导致拓扑霍尔的效应。不利于立方磁刺猬结构,并将正骨刺猬和“ Skyyrmion”模型放置为磁性结构相等的候选者。我们还报告了一种新的合并机械化学和固态化学途径,以在环境压力和中等温度下合成MNGE,并与传统的高压合成获得的样品进行比较。
From new neutron powder diffraction experiments on the chiral cubic ($P2{_1}3$) magnet manganese germanide MnGe, we analyse all of the possible crystal symmetry-allowed magnetic superstructures that are determined successfully from the data. The incommensurate propagation vectors $k$ of the magnetic structure are found to be aligned with the [100] cubic axes, and correspond to a magnetic periodicity of about 30 $Å$ at 1.8 K. Several maximal crystallographic symmetry magnetic structures are found to fit the data equally well and are presented. These include topologically non-trivial magnetic hedgehog and "skyrmion'' structures in multi-$k$ cubic or orthorhombic 3+3 and orthorhombic 3+2 dimensional magnetic superspace groups respectively, with either potentially responsible for topological Hall effect. The presence of orthorhombic distortions in the space group $P2_12_12_1$ caused by the transition to the magnetically ordered state does not favour the cubic magnetic hedgehog structure, and leave both orthorhombic hedgehog and "skyrmion'' models as equal candidates for the magnetic structures. We also report on a new combined mechanochemical and solid-state chemical route to synthesise MnGe at ambient pressures and moderate temperatures, and compare with samples obtained by the traditional high pressure synthesis.