We study the problem of the electron excitation spectrum in the presence of point-like and regularized Coulomb impurities in gapped graphene. To this end, we use the Dirac model and in the point-like case theory of self-adjoint extensions of symmetric operators. In the point-like case, we construct a family of self-adjoint Hamiltonians describing the excitations for any charge of an impurity. Spectra and (generalized) eigenfunctions for all such Hamiltonians are found. Then, we consider the spectral problem in the case of a regularized Coulomb potential of impurities for a special regularization. We study exact equations for charges of impurities that may generate bound states with energy that coincides with the upper boundary of the negati...
We study the two dimensional massless Coulomb–Dirac operator restricted to its positive spectral sub...
We address local inelastic scattering from the vibrational impurity adsorbed onto graphene and the e...
We analyze the scattering sector of the Hamiltonians for both gapless and gapped graphene in the pre...
We study low-energy massless electronic excitations in a graphene monolayer near a pointlike Coulomb...
The electronic energy spectrum of graphene electron subjected to a homogeneous magnetic field in the...
We study the Dirac equation for quasiparticles in gapped graphene with two oppositely charged impuri...
In this paper, we numerically study bound electron states induced by long-range Coulomb impurities i...
Unique electronic band structure of graphene with its semimetallic features near the charge neutrali...
We study the physics of Dirac fermions in a gapped graphene monolayer containing two Coulomb impurit...
We study the effects of impurities on the electronic properties of graphene. The tight-binding Hamil...
Graphene consists of an atom-thick layer of carbon atoms arranged in a honeycomb lattice, and its lo...
We present exact analytical and numerical results for the electronic spectra and the Friedel oscilla...
We consider a graphene sheet in the presence of a strong perpendicular magnetic field with a single ...
We study optically-induced collective excitations of graphene in the presence of a strong perpendicu...
AbstractIn this contribution, we study the effects caused by an impurity on the quantum dynamics of ...
We study the two dimensional massless Coulomb–Dirac operator restricted to its positive spectral sub...
We address local inelastic scattering from the vibrational impurity adsorbed onto graphene and the e...
We analyze the scattering sector of the Hamiltonians for both gapless and gapped graphene in the pre...
We study low-energy massless electronic excitations in a graphene monolayer near a pointlike Coulomb...
The electronic energy spectrum of graphene electron subjected to a homogeneous magnetic field in the...
We study the Dirac equation for quasiparticles in gapped graphene with two oppositely charged impuri...
In this paper, we numerically study bound electron states induced by long-range Coulomb impurities i...
Unique electronic band structure of graphene with its semimetallic features near the charge neutrali...
We study the physics of Dirac fermions in a gapped graphene monolayer containing two Coulomb impurit...
We study the effects of impurities on the electronic properties of graphene. The tight-binding Hamil...
Graphene consists of an atom-thick layer of carbon atoms arranged in a honeycomb lattice, and its lo...
We present exact analytical and numerical results for the electronic spectra and the Friedel oscilla...
We consider a graphene sheet in the presence of a strong perpendicular magnetic field with a single ...
We study optically-induced collective excitations of graphene in the presence of a strong perpendicu...
AbstractIn this contribution, we study the effects caused by an impurity on the quantum dynamics of ...
We study the two dimensional massless Coulomb–Dirac operator restricted to its positive spectral sub...
We address local inelastic scattering from the vibrational impurity adsorbed onto graphene and the e...
We analyze the scattering sector of the Hamiltonians for both gapless and gapped graphene in the pre...