论文标题
Antiskyrmion托管Heusler化合物MN1.4PTSN的四方超结构
Tetragonal superstructure of the antiskyrmion hosting Heusler compound Mn1.4PtSn
论文作者
论文摘要
非中心对称磁铁中的天空是类似涡流的旋转布置,被视为信息存储设备的潜在候选。晶体结构和非连接磁性结构以及磁性和自旋轨道相互作用定义了天际结构的对称性。 We outline the importance of these parameters in the Heusler compound Mn1.4PtSn which hosts antiskyrmions, a vortex-like spin texture related to skyrmions.1 We overcome the challenge of growing large micro-twin-free single crystals of Mn1.4PtSn which has proved to be the bottleneck for realizing bulk skyrmionic/antiskyrmionic states in a compound.使用5D转换金属,铂,以及锰作为Heusler化合物(例如MN1.4PTSN)中的成分是非授权磁性结构的前提。由于四方逆雌赫斯勒结构,MN1.4PTSN表现出大型磁晶和D2D对称性,这对于反扰动是必不可少的。 MN1.4PTSN中的上部结构是由MN胶合诱导的,这使得能够发生铁磁交换相互作用。 MN1.4PTSN是第一个已知的四角形Heusler上部结构化合物,为与成千上万种化合物的家庭中的上层建筑相关的属性打开了一个新的研究方向。
Skyrmions in non-centrosymmetric magnets are vortex-like spin arrangements, viewed as potential candidates for information storage devices. The crystal structure and non-collinear magnetic structure together with magnetic and spin-orbit interactions define the symmetry of the Skyrmion structure. We outline the importance of these parameters in the Heusler compound Mn1.4PtSn which hosts antiskyrmions, a vortex-like spin texture related to skyrmions.1 We overcome the challenge of growing large micro-twin-free single crystals of Mn1.4PtSn which has proved to be the bottleneck for realizing bulk skyrmionic/antiskyrmionic states in a compound. The use of 5d-transition metal, platinum, together with manganese as constituents in the Heusler compound such as Mn1.4PtSn is a precondition for the non-collinear magnetic structure. Due to the tetragonal inverse Heusler structure, Mn1.4PtSn exhibits large magneto-crystalline anisotropy and D2d symmetry, which are necessary for antiskyrmions. The superstructure in Mn1.4PtSn is induced by Mn-vacancies which enables a ferromagnetic exchange interaction to occur. Mn1.4PtSn, the first known tetragonal Heusler superstructure compound, opens up a new research direction for properties related to the superstructure in a family containing thousands of compounds.