论文标题
电子散射在拓扑绝缘子表面的线路缺陷的超晶格中
Electron scattering in a superlattice of line defects on the surface of topological insulators
论文作者
论文摘要
理论上通过转移矩阵方法研究了从具有六边形翘曲效果的拓扑绝缘体表面的周期线缺陷中的电子散射。由于在动量交换下扭曲的能量轮廓的不对称性,研究了表面线缺陷的影响,充当结构波纹对电子传播的影响。随着缺陷数量和电势强度而变化的透射曲线和谐振峰的细节在很大程度上取决于线缺陷延伸的方向。在低能量下,入射和反射的传播电子之间的量子干扰在透射共振方面具有主要贡献,而在高能量下,由于恒定能量轮廓上的多个散射过程也出现了,这也出现了。通过增加线缺陷之间的空间分离,在低入射能量下,电导的最小值仍然很高,而随着缺陷次数的增加,最小值可能在高能下接近零。我们的发现表明,可以利用拓扑绝缘子表面上的潜在涟漪来控制这些材料的局部电子特性。
The electron scattering from periodic line defects on the surface of topological insulators with hexagonal warping effect is investigated theoretically by means of a transfer matrix method. The influence of surface line defects, acting as structural ripples on propagation of electrons are studied in two perpendicular directions due to the asymmetry of warped energy contour under momentum exchange. The transmission profiles and the details of resonant peaks which vary with the number of defects and the strength of their potentials are strongly dependent on the direction in which the line defects extend. At low energies, the quantum interference between the incident and reflected propagating electrons has the dominant contribution in transmission resonances, while at high energies the multiple scattering processes on the constant-energy contour also appear because of the strong warping effect. By increasing the spatial separation between the line defects, the minimum value of electrical conductance remains significantly high at low incident energies, while the minimum value may approach zero at high energies as the number of defects is increased. Our findings suggest that the potential ripples on the surface of topological insulators can be utilized to control the local electronic properties of these materials.