首页> 外文期刊>Advances in condensed matter physics >Two-Dimensional Metallicity with a Large Spin-Orbit Splitting: DFT Calculations of the Atomic, Electronic, and Spin Structures of the Au/Ge(111)-(root 3 x root 3)R30 degrees Surface
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Two-Dimensional Metallicity with a Large Spin-Orbit Splitting: DFT Calculations of the Atomic, Electronic, and Spin Structures of the Au/Ge(111)-(root 3 x root 3)R30 degrees Surface

机译:具有大自旋轨道分裂的二维金属性:Au / Ge(111)-(根3 x根3)R30度表面的原子,电子和自旋结构的DFT计算

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摘要

Density functional theory (DFT) is applied to study the atomic, electronic, and spin structures of the Au monolayer at the Ge(111) surface. It is found that the theoretically determined most stable atomic geometry is described by the conjugated honeycomb-chained-trimer (CHCT) model, in a very good agreement with experimental data. The calculated electronic structure of the system, being in qualitatively good agreement with the photoemission measurements, shows fingerprints of the many-body effects (self-interaction corrections) beyond the LDA or GGA approximations. The most interesting property of this surface system is the large spin splitting of its metallic surface bands and the undulating spin texture along the hexagonal Fermi contours, which highly resembles the spin texture at the Dirac state of the topological insulator Bi-2 Te-3. These properties make this system particularly interesting from both fundamental and technological points of view.
机译:密度泛函理论(DFT)用于研究Ge(111)表面Au单层的原子,电子和自旋结构。结果发现,理论上确定的最稳定的原子几何结构是由共轭蜂窝链三聚体(CHCT)模型描述的,与实验数据非常吻合。系统计算出的电子结构与光发射测量在质量上很好地吻合,显示出超过LDA或GGA近似值的多体效应(自相互作用校正)的指纹。该表面系统最有趣的特性是其金属表面带的大自旋分裂和沿六角费米轮廓的起伏自旋纹理,这与拓扑绝缘体Bi-2 Te-3的狄拉克状态下的自旋纹理高度相似。从基础和技术的角度来看,这些特性使该系统特别有趣。

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