Interference of Topologically Protected Edge States in Silicene Nanoribbons
arXiv:1301.6337 · doi:10.1103/PhysRevB.88.121401
Abstract
Silicene is a two-dimensional quantum spin-Hall insulator. We study the edge channels of silicene nanoribbons from the viewpoint of the topological protection and the interference between the two edges. It is found that the behaviors of the helical edge channels (HECs) are completely different between the armchair and zigzag edges. The penetration depths of the HEC is antiproportional to the spin-orbit gap for the armchair edge (: the Fermi velocity, : the gap due to the spin-orbit interaction), while it remains as short as the lattice constant for the zigzag edge. Zero-energy states disappear in armchair nanoribbons due to an interference of two edge states, while they remains in zigzag nanoribbons even if the width is quite narrow. The gap of HECs behaves as for , and as for for armchair nanoribbons, while it remains essentially zero irrespectively of for zigzag nanoribbons.
5 pages, 6 figures
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