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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Tetragonal Superstructure of the Antiskyrmion Hosting Heusler Compound Mn1.4PtSn
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Tetragonal Superstructure of the Antiskyrmion Hosting Heusler Compound Mn1.4PtSn

机译:Antiskermion托管Heusler化合物Mn1.4ptsn的四方超值结构

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摘要

Skyrmions in non-centrosymmetric magnets are vortex-like spin arrangements, viewed as potential candidates for information storage devices. The crystal structure and noncollincar 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. 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 Sd-transition metal, platinum, together with manganese as constituents in the Heusler compound such as Mn1.4PtSn is a precondition for the noncollinear magnetic structure. Because of the tetragonal inverse Heusler structure, Mn1.4PtSn exhibits large magnetocrystalline anisotropy and D-2d symmetry, which are necessary for antiskyrmions. The superstructure in Mn1.4PtSn is induced by Mn-vacancies, which enable 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.
机译:非Centroosymmetric磁体中的Skyrmions是类似涡旋自旋布置,被视为信息存储设备的潜在候选者。晶体结构和非胶合磁性结构与磁性和旋转轨道相互作用一起定义了斯基逆转结构的对称性。我们概述了这些参数在Heusler化合物Mn1.4ptsn中的重要性,该参数托管Antiskyrmions,一种与臭鼬类似的涡旋旋转纹理。我们克服了Mn1.4ptsn生长大的微双胞胎单晶的挑战,这已被证明是在化合物中实现批量胰蛋白酶/抗ishermion态的瓶颈。使用SD-过渡金属,铂与HymaNese作为HEUSLER化合物中的成分如MN1.4ptsn中的成分是非可折叠磁性结构的前提条件。由于四边形反逆风片结构,Mn1.4ptSn表现出大的磁镀晶各向异性和D-2D对称性,这对于Antiskyrmions是必需的。 Mn1.4ptsn中的上层结构由Mn-uspancies诱导,其能够发生铁磁性交换相互作用。第一种已知的四方Heusler上层建化合物Mn1.4ptsn开辟了与含有数千种化合物的家族中的上部结构相关的新研究方向。

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