Pan Hui, Wang Xue-Sen
Institute of Applied Physics and Materials Engineering, Faculty of Science and Technology, University of Macau, Macao, SAR, China,
Nanoscale Res Lett. 2015 Dec;10(1):1043. doi: 10.1186/s11671-015-1043-8. Epub 2015 Aug 21.
We report the first-principle study on the recovery and linearization of Dirac cones in the electronic band structures of a few bilayer Sb(111) films (n-BL Sb) by surface modification. Due to the interaction between the surface states on the two surfaces of a free-standing film, the distorted Dirac cone in n-BL Sb(111) (n < 5) disappears. We demonstrate that the Dirac cone can be restored by functionalizing one surface with certain atoms including H, Ag, and Au, to reduce the inter-surface interaction. We further show that an ideal Dirac cone with linear dispersion of topological surface states near the zone center can be realized by functionalizing both surfaces of the film with oxygen, which enhances spin-orbital coupling. The realization of Dirac cone by surface functionalization shows promise for applications of topologic materials to spintronic devices and their operation in complicated conditions.
我们报道了通过表面修饰对几层双层Sb(111)薄膜(n-BL Sb)电子能带结构中狄拉克锥的恢复和线性化的第一性原理研究。由于独立薄膜两个表面上的表面态之间的相互作用,n-BL Sb(111)(n < 5)中扭曲的狄拉克锥消失。我们证明,通过用包括H、Ag和Au在内的某些原子对一个表面进行功能化,可以恢复狄拉克锥,以减少表面间相互作用。我们进一步表明,通过用氧对薄膜的两个表面进行功能化,可以实现具有接近区域中心的拓扑表面态线性色散的理想狄拉克锥,这增强了自旋轨道耦合。通过表面功能化实现狄拉克锥为拓扑材料在自旋电子器件中的应用及其在复杂条件下的运行显示出了前景。