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Purely one-dimensional bands with a giant spin-orbit splitting: Pb nanoribbons on Si(553) surface

机译:具有巨大自旋轨道分裂的纯一维带:Si(553)表面上的Pb纳米带

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摘要

We report on a giant Rashba type splitting of metallic bands observed in one-dimensional structures prepared on a vicinal silicon substrate. A single layer of Pb on Si(553) orders this vicinal surface making perfectly regular distribution of monatomic steps. Although there is only one layer of Pb, the system reveals very strong metallic and purely one-dimensional character, which manifests itself in multiple surface state bands crossing the Fermi level in the direction parallel to the step edges and a small band gap in the perpendicular direction. As shown by spin-polarized photoemission and density functional theory calculations these surface state bands are spin-polarized and completely decoupled from the rest of the system. The experimentally observed spin splitting of 0.6 eV at room temperature is the largest found to now in the silicon-based metallic nanostructures, which makes the considered system a promising candidate for application in spintronic devices.
机译:我们报告了在邻域硅衬底上制备的一维结构中观察到的金属带的大型Rashba型分裂。 Si(553)上的单层Pb使该邻近表面整齐地分布了单原子台阶。尽管只有一层Pb,但该系统显示出非常强的金属和纯粹的一维特征,表现为在平行于台阶边缘的方向上穿过费米能级的多个表面状态带以及垂直方向上的小带隙方向。如自旋极化光发射和密度泛函理论计算所示,这些表面状态带是自旋极化的,并且与系统的其余部分完全解耦。在室温下,实验观察到的自旋分裂为0.6 eV,是迄今为止在硅基金属纳米结构中发现的最大自旋分裂,这使该系统成为自旋电子器件中有希望的候选者。

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