Combining an analytical and numerical approach we investigate the dispersion of the topologically protected spin-filtered edge states of the quantum spin Hall state on honeycomb and ruby nets with zigzag (ZZ) and armchair (AC) edges. We show that the Fermi velocity of the helical edge states on ZZ edges increases linearly with the strength of the spin-orbit coupling (SOC) whereas for AC edges the Fermi velocity is independent of the SOC. Also the decay length of edge states into the bulk is dramatically different for AC and ZZ edges, displaying an inverse functional dependence on the SOC. © 2013 American Physical Society
The spin Hall effect in a two-dimensional electron system on honeycomb lattice with both intrinsic a...
We consider the combined effects of large spin-orbit couplings and a perpendicular magnetic field in a...
Spin–orbit coupling changes graphene, in principle, into a two-dimensional topological insulator, al...
Combining an analytical and numerical approach we investigate the dispersion of the topologically pr...
The transversal propagation of the edge states in a two-dimensional quantum spin Hall (QSH) system i...
We study the spin edge states in the quantum spin-Hall (QSH) effect on a single-atomic layer graphen...
We propose a generalized Dirac fermion description for the electronic state of graphene terminated ...
Topological states of matter in two-dimensional systems are characterised by the different propertie...
The hallmark of the spin-Hall insulator is the presence of gapless edge states of different spins mo...
Abstract Studying the edge states of a topological system and extracting their topological propertie...
We address the impact of spin-orbit coupling on the existence and properties of topological edge sta...
Studying the edge states of a topological system and extracting their topological properties is of g...
We investigate the dependence of band dispersion of the quantum spin Hall effect (QSHE) edge states ...
We measure the local near-field spin in topological edge state waveguides that emulate the quantum s...
19 págs.; 11 figs.; 1 tab.; 5 apéndicesWe study the helical edge states of a two-dimensional topolog...
The spin Hall effect in a two-dimensional electron system on honeycomb lattice with both intrinsic a...
We consider the combined effects of large spin-orbit couplings and a perpendicular magnetic field in a...
Spin–orbit coupling changes graphene, in principle, into a two-dimensional topological insulator, al...
Combining an analytical and numerical approach we investigate the dispersion of the topologically pr...
The transversal propagation of the edge states in a two-dimensional quantum spin Hall (QSH) system i...
We study the spin edge states in the quantum spin-Hall (QSH) effect on a single-atomic layer graphen...
We propose a generalized Dirac fermion description for the electronic state of graphene terminated ...
Topological states of matter in two-dimensional systems are characterised by the different propertie...
The hallmark of the spin-Hall insulator is the presence of gapless edge states of different spins mo...
Abstract Studying the edge states of a topological system and extracting their topological propertie...
We address the impact of spin-orbit coupling on the existence and properties of topological edge sta...
Studying the edge states of a topological system and extracting their topological properties is of g...
We investigate the dependence of band dispersion of the quantum spin Hall effect (QSHE) edge states ...
We measure the local near-field spin in topological edge state waveguides that emulate the quantum s...
19 págs.; 11 figs.; 1 tab.; 5 apéndicesWe study the helical edge states of a two-dimensional topolog...
The spin Hall effect in a two-dimensional electron system on honeycomb lattice with both intrinsic a...
We consider the combined effects of large spin-orbit couplings and a perpendicular magnetic field in a...
Spin–orbit coupling changes graphene, in principle, into a two-dimensional topological insulator, al...