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Magnetic and Electronic Properties of Weyl Semimetal Co

机译:Weyl Semimetal Co的磁性和电子性质

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摘要

Magnetic Weyl semimetals are newly discovered quantum materials with the potential for use in spintronic applications. Of particular interest is the cubic Heusler compound Co2MnGa due to its inherent magnetic and topological properties. This work presents the structural, magnetic and electronic properties of magnetron co-sputtered Co2MnGa thin films, with thicknesses ranging from 10 to 80 nm. Polarized neutron reflectometry confirmed a uniform magnetization through the films. Hard x-ray photoelectron spectroscopy revealed a high degree of spin polarization and localized (itinerant) character of the Mn d (Co d) valence electrons and accompanying magnetic moments. Further, broadband and field orientation-dependent ferromagnetic resonance measurements indicated a relation between the thickness-dependent structural and magnetic properties. The increase of the tensile strain-induced tetragonal distortion in the thinner films was reflected in an increase of the cubic anisotropy term and a decrease of the perpendicular uniaxial term. The lattice distortion led to a reduction of the Gilbert damping parameter and the thickness-dependent film quality affected the inhomogeneous linewidth broadening. These experimental findings will enrich the understanding of the electronic and magnetic properties of magnetic Weyl semimetal thin films.
机译:新发现磁性纤维半型,具有用于旋转型应用的可能性的量子材料。特别感兴趣的是立方Heusler复合CO2mnga由于其固有的磁性和拓扑性质。该工作介绍了磁控磁控型共溅射的CO2MNGA薄膜的结构,磁性和电子性质,厚度为10至80nm。偏振中子反射区通过薄膜确认均匀的磁化。硬X射线光电子能谱显示MN D(CO D)价电子和伴随磁矩的高度自旋极化和局部化(溜进)特征。此外,宽带和现场取向依赖性铁磁共振测量表明厚度依赖性结构和磁性之间的关系。在立方体各向异性术语的增加和垂直单轴术语的增加中,较薄膜中拉伸应变诱导的四方变形的增加反映。晶格畸变导致吉尔伯特阻尼参数的减少,厚度依赖性薄膜质量影响了不均匀的线宽宽度。这些实验结果将丰富了解磁性Weyl半薄膜的电子和磁性。

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