We propose a generalized Dirac fermion description for the electronic state of graphene terminated by a zigzag edge. This description admits a specific spin-orbit coupling needed to preserve time-reversal invariance of the zigzag confinement, otherwise, for spinless particles, showing the parity anomaly typical of quantum electrodynamics in (2+1) dimensions. At a certain critical strength the spin-orbit coupling induces a phase transition of the quantum-spin-Hall type. It is manifested by a novel type of the edge states consisting of a Kramers' pair of counter-propagating modes with opposite spin orientations. Such edge states are capable of accumulating an integer spin in response to a transverse electric field in the absence o...
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 theoretically investigate in this work the interplay between the intrinsic spin-orbit coupling (S...
We analyze the energy spectrum of graphene in the presence of spin-orbit coupling and a one-dimensio...
We study graphene, which has both spin-orbit coupling (SOC), taken to be of the Kane-Mele form, and ...
The edges of graphene and graphene like systems can host localized states with evanescent wave funct...
We study the spin edge states in the quantum spin-Hall (QSH) effect on a single-atomic layer graphen...
We study the electronic edge states of graphene in the quantum Hall regime. For non-interacting elec...
This thesis in physics constitutes a theoretical study of the edge states in bi-dimensional crystals...
The so-called quantum spin Hall phase is a topologically nontrivial insulating phase that is predict...
Graphene has been actively researched because its low energy electronic Hamiltonian is the relativis...
We investigate an effective model of proximity modified graphene (or symmetrylike materials) with br...
Van der Waals heterostructures assembled from atomically thin crystals are ideal model systems to st...
The electronic structure of massless Dirac fermion in the graphene hexagonal bipartite is seriously ...
Spin splitting of the energy spectrum of single-layer graphene on Au/Ni(111) substrate has been rece...
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 theoretically investigate in this work the interplay between the intrinsic spin-orbit coupling (S...
We analyze the energy spectrum of graphene in the presence of spin-orbit coupling and a one-dimensio...
We study graphene, which has both spin-orbit coupling (SOC), taken to be of the Kane-Mele form, and ...
The edges of graphene and graphene like systems can host localized states with evanescent wave funct...
We study the spin edge states in the quantum spin-Hall (QSH) effect on a single-atomic layer graphen...
We study the electronic edge states of graphene in the quantum Hall regime. For non-interacting elec...
This thesis in physics constitutes a theoretical study of the edge states in bi-dimensional crystals...
The so-called quantum spin Hall phase is a topologically nontrivial insulating phase that is predict...
Graphene has been actively researched because its low energy electronic Hamiltonian is the relativis...
We investigate an effective model of proximity modified graphene (or symmetrylike materials) with br...
Van der Waals heterostructures assembled from atomically thin crystals are ideal model systems to st...
The electronic structure of massless Dirac fermion in the graphene hexagonal bipartite is seriously ...
Spin splitting of the energy spectrum of single-layer graphene on Au/Ni(111) substrate has been rece...
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 theoretically investigate in this work the interplay between the intrinsic spin-orbit coupling (S...