论文标题
零场螺旋状态的手性特性和巡回kagome金属ymn $ _6 $ sn $ _6 $的磁性磁性阶段
Chiral properties of the zero-field spiral state and field-induced magnetic phases of the itinerant kagome metal YMn$_6$Sn$_6$
论文作者
论文摘要
在ymn $ _6 $ _6 $ _6 $的六角平面上应用磁场会导致复杂的磁相图的相应阶段和不重量不超过的阶段,其中一种与独特的波动驱动的机制共存了与拓扑厅效应(The)共存。使用非偏振中子衍射,我们报告了两个先前鉴定但未知的相称阶段的已解决的磁性结构。这些包括低温,高场面的扇形相和室温,低场倾斜的抗铁磁相。扇形和强迫铁磁相之间的中间不相当相位也被确定为平面内磁场图的最后一个已知阶段。使用同步加速器粉末衍射的额外表征显示出极高的单相晶体,这表明整个相位图的大部分时间都存在两个不固定的磁性结构,这是系统的内在特性。有趣的是,偏振中子衍射表明,中心对称系统在零场双闪光相中宿主的优先手性,这与the相具有拓扑性的非平地特征。
Applying a magnetic field in the hexagonal plane of YMn$_6$Sn$_6$ leads to a complex magnetic phase diagram of commensurate and incommensurate phases, one of which coexists with the topological Hall effect (THE) generated by a unique fluctuation-driven mechanism. Using unpolarized neutron diffraction, we report on the solved magnetic structure for two previously identified, but unknown, commensurate phases. These include a low-temperature, high-field fan-like phase and a room-temperature, low-field canted antiferromagnetic phase. An intermediate incommensurate phase between the fan-like and forced ferromagnetic phases is also identified as the last known phase of the in-plane field-temperature diagram. Additional characterization using synchrotron powder diffraction reveals extremely high-quality, single-phase crystals, which suggests that the presence of two incommensurate magnetic structures throughout much of the phase diagram is an intrinsic property of the system. Interestingly, polarized neutron diffraction shows that the centrosymmetric system hosts preferential chirality in the zero-field double-flat-spiral phase, which, along with the THE, is a topologically non-trivial characteristic.