We address local inelastic scattering from the vibrational impurity adsorbed onto graphene and the evolution of the local density of electron states near the impurity from a weak to strong coupling regime. For weak coupling the local electronic structure is distorted by inelastic scattering developing peaks or dips and steps. These features should be detectable in the inelastic electron tunneling spectroscopy d(2)I/dV(2) using local probing techniques. Inelastic Friedel oscillations distort the spectral density at energies close to the inelastic mode. In the strong coupling limit, a local negative U center forms in the atoms surrounding the impurity site. For those atoms, the Dirac cone structure is fully destroyed, that is, the linear ener...
Single-atom impurities and other atomic-scale defects can notably alter the local vibrational respon...
The interaction between the Fermi sea of conduction electrons and a nonadiabatic attractive impurity...
The interaction between the Fermi sea of conduction electrons and a nonadiabatic attractive impurity...
We address local inelastic scattering from the vibrational impurity adsorbed onto graphene and the e...
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 present exact analytical calculations of scanning tunneling currents in locally disordered graphe...
International audienceSingle-atom impurities and other atomic-scale defects can significantly alter ...
International audienceResonant scattering of electrons with low energies (as compared to the bandwid...
Unique electronic band structure of graphene with its semimetallic features near the charge neutrali...
Inelastic electron tunneling spectroscopy with a scanning tunneling microscope is a powerful method ...
The goal of this master thesis is to investigate the eect of electron-electron interaction on electr...
We study the effects of impurities on the electronic properties of graphene. The tight-binding Hamil...
Defects in graphene give rise to zero modes that are often related to the sharp peak in the local de...
The purity of graphene samples is of crucial importance for their experimental and practical use. In...
Single-atom impurities and other atomic-scale defects can notably alter the local vibrational respon...
The interaction between the Fermi sea of conduction electrons and a nonadiabatic attractive impurity...
The interaction between the Fermi sea of conduction electrons and a nonadiabatic attractive impurity...
We address local inelastic scattering from the vibrational impurity adsorbed onto graphene and the e...
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 present exact analytical calculations of scanning tunneling currents in locally disordered graphe...
International audienceSingle-atom impurities and other atomic-scale defects can significantly alter ...
International audienceResonant scattering of electrons with low energies (as compared to the bandwid...
Unique electronic band structure of graphene with its semimetallic features near the charge neutrali...
Inelastic electron tunneling spectroscopy with a scanning tunneling microscope is a powerful method ...
The goal of this master thesis is to investigate the eect of electron-electron interaction on electr...
We study the effects of impurities on the electronic properties of graphene. The tight-binding Hamil...
Defects in graphene give rise to zero modes that are often related to the sharp peak in the local de...
The purity of graphene samples is of crucial importance for their experimental and practical use. In...
Single-atom impurities and other atomic-scale defects can notably alter the local vibrational respon...
The interaction between the Fermi sea of conduction electrons and a nonadiabatic attractive impurity...
The interaction between the Fermi sea of conduction electrons and a nonadiabatic attractive impurity...