We investigate the formation of edge states in graphene ribbons and flakes with proximity induced valley-Zeeman and Rashba spin-orbit couplings in the presence of a perpendicular magnetic field $B$. Two types of edges states appear in the spin-orbit gap at the Fermi level at zero field: strongly localized pseudohelical (intervalley) states and weakly localized intravalley states. We show that if the magnetic field is stronger than a crossover field $B_c$, which is a few mT for realistic systems such as graphene/WSe$_2$, only the pseudohelical edge states remain in zigzag graphene ribbons; the intravalley states disappear. The crossover is directly related to the closing and reopening of the bulk gap formed between nonzero Landau levels. Rem...
We study graphene, which has both spin-orbit coupling (SOC), taken to be of the Kane-Mele form, and ...
Snake states are open trajectories for charged particles propagating in two dimensions under the inf...
Spin–orbit coupling changes graphene, in principle, into a two-dimensional topological insulator, al...
We investigate topological properties of models that describe graphene on realistic substrates which...
The edges of graphene and graphene like systems can host localized states with evanescent wave funct...
Graphene subject to a strong, tilted magnetic field exhibits an insulator-metal transition tunable b...
The magnetism by the edge states in graphene is investigated theoretically. An instability of the ps...
We present an exact solution to the problem of the spin edge states in the presence of equal Bychkov...
The electronic properties of a graphene monolayer in a magnetic and a strain-induced pseudomagnetic ...
Application of a perpendicular magnetic field to charge neutral graphene is expected to result in a ...
We study a model of a p-n junction in single-layer graphene in the presence of a perpendicular magne...
We demonstrate clear weak anti-localization (WAL) effect arising from induced Rashba spin–orbit coup...
We present a mechanism for persistent charge current. Quantum spin Hall insulators hold dissipationl...
Single-layer graphenes subject to periodic lateral strains are artificial crystals that can support ...
In topological systems, a modulation in the gap onset near interfaces can lead to the appearance of ...
We study graphene, which has both spin-orbit coupling (SOC), taken to be of the Kane-Mele form, and ...
Snake states are open trajectories for charged particles propagating in two dimensions under the inf...
Spin–orbit coupling changes graphene, in principle, into a two-dimensional topological insulator, al...
We investigate topological properties of models that describe graphene on realistic substrates which...
The edges of graphene and graphene like systems can host localized states with evanescent wave funct...
Graphene subject to a strong, tilted magnetic field exhibits an insulator-metal transition tunable b...
The magnetism by the edge states in graphene is investigated theoretically. An instability of the ps...
We present an exact solution to the problem of the spin edge states in the presence of equal Bychkov...
The electronic properties of a graphene monolayer in a magnetic and a strain-induced pseudomagnetic ...
Application of a perpendicular magnetic field to charge neutral graphene is expected to result in a ...
We study a model of a p-n junction in single-layer graphene in the presence of a perpendicular magne...
We demonstrate clear weak anti-localization (WAL) effect arising from induced Rashba spin–orbit coup...
We present a mechanism for persistent charge current. Quantum spin Hall insulators hold dissipationl...
Single-layer graphenes subject to periodic lateral strains are artificial crystals that can support ...
In topological systems, a modulation in the gap onset near interfaces can lead to the appearance of ...
We study graphene, which has both spin-orbit coupling (SOC), taken to be of the Kane-Mele form, and ...
Snake states are open trajectories for charged particles propagating in two dimensions under the inf...
Spin–orbit coupling changes graphene, in principle, into a two-dimensional topological insulator, al...