We study the band structure and the density of states of graphene in the presence of a next-to-nearest-neighbor coupling (N2) and a third-nearest-neighbor coupling (N3). We show that for values of N3 larger or equal to 1/3 of the value of the nearest-neighbor hopping (NN), extra Dirac points appear in the spectrum. If N3 is exactly equal to 1/3 NN, the new Dirac points are localized at the M points of the Brillouin zone and are hybrid: the electrons have a linear dispersion along the ΓM direction and a quadratic dispersion along the perpendicular direction MK. For larger values of N3 the new points have a linear dispersion, and are situated along the MK line. For a value of N3 equal to 1/2 NN, these points merge with the Dirac cones at the ...
The adhesion of graphene on slightly lattice-mismatched surfaces, for instance, of hexagonal boron n...
Abstract. This review aims at a theoretical discussion of Dirac points in two-dimensional systems. W...
The effectively massless, relativistic behaviour of graphene's charge carriers—known as Dirac fermio...
Moving, merging, and annihilating Dirac points are studied theoretically in the tight-binding model ...
Graphene has been actively researched because its low energy electronic Hamiltonian is the relativis...
We extend the physics of graphene to three dimensional systems by showing that Dirac points can exis...
We extend the physics of graphene to three dimensional systems by showing that Dirac points can exis...
Large Chern number phases in a Haldane model become possible if there is a multiplication of Dirac p...
We show that the pseudorelativistic physics of graphene near the Fermi level can be extended to thre...
We have determined the electronic bandstructure of clean and potassium-doped single layer graphene, ...
We report on numerical study of the Dirac fermions in partially filled N=3 Landau level (LL) in grap...
A topological Dirac semimetal is a novel state of quantum matter which has recently attracted much a...
This review aims at a theoretical discussion of Dirac points in two-dimensional systems. Whereas Dir...
We analyze the energy spectrum of graphene in the presence of spin-orbit coupling and a one-dimensio...
© the Owner Societies 2015. In this work, the systems are constructed with the defect lines of B-B o...
The adhesion of graphene on slightly lattice-mismatched surfaces, for instance, of hexagonal boron n...
Abstract. This review aims at a theoretical discussion of Dirac points in two-dimensional systems. W...
The effectively massless, relativistic behaviour of graphene's charge carriers—known as Dirac fermio...
Moving, merging, and annihilating Dirac points are studied theoretically in the tight-binding model ...
Graphene has been actively researched because its low energy electronic Hamiltonian is the relativis...
We extend the physics of graphene to three dimensional systems by showing that Dirac points can exis...
We extend the physics of graphene to three dimensional systems by showing that Dirac points can exis...
Large Chern number phases in a Haldane model become possible if there is a multiplication of Dirac p...
We show that the pseudorelativistic physics of graphene near the Fermi level can be extended to thre...
We have determined the electronic bandstructure of clean and potassium-doped single layer graphene, ...
We report on numerical study of the Dirac fermions in partially filled N=3 Landau level (LL) in grap...
A topological Dirac semimetal is a novel state of quantum matter which has recently attracted much a...
This review aims at a theoretical discussion of Dirac points in two-dimensional systems. Whereas Dir...
We analyze the energy spectrum of graphene in the presence of spin-orbit coupling and a one-dimensio...
© the Owner Societies 2015. In this work, the systems are constructed with the defect lines of B-B o...
The adhesion of graphene on slightly lattice-mismatched surfaces, for instance, of hexagonal boron n...
Abstract. This review aims at a theoretical discussion of Dirac points in two-dimensional systems. W...
The effectively massless, relativistic behaviour of graphene's charge carriers—known as Dirac fermio...