The many-body correction to the band structure of a quasi-free-standing graphene layer is obtained within the Overhauser approach, where the electron-plasmon interaction is described as a field theoretical problem. We find that the Dirac-like spectrum is shifted by Delta E(k = 0), which is on the order of 50-150 meV, depending on the electron concentration n(e), and is in semiquantitative agreement with experimental data. The value of the Fermi velocity is renormalized by several percents and decreases with increasing electron concentration as found experimentally
The goal of this master thesis is to investigate the eect of electron-electron interaction on electr...
The Coulomb interaction and the correlation of a remote electron with a single layer of graphene is ...
International audienceIn this joint experimental and theoretical work, we investigate collective ele...
The many-body correction to the band structure of a quasi-free-standing graphene layer is obtained w...
The relation between the energy and momentum of plasmarons in bilayer graphene is investigated withi...
The interaction between electrons and plasmons in trilayer graphene is investigated within the Overh...
A hallmark of graphene is its unusual conical band structure that leads to a zero-energy band gap at...
A hallmark of graphene is its unusual conical band structure that leads to a zero-energy band gap at...
We have investigated the plasmon dispersion in quasi-free-standing monolayer graphene (QFMLG) and ep...
The effectively massless, relativistic behaviour of graphene's charge carriers—known as Dirac fermio...
Electron-plasmon coupling in graphene has been shown recently to give rise to a “plasmaron” quasipar...
We have determined the electronic bandstructure of clean and potassium-doped single layer graphene, ...
Journal ArticlePolarizability of noninteracting 2D Dirac electrons has a 1 1 / √qv-ω singularity at ...
http://arxiv.org/abs/0901.4528Plasmons in ordinary electron liquids are collective excitations whose...
Collective plasma excitations of optically dressed Dirac electrons in single and double graphene lay...
The goal of this master thesis is to investigate the eect of electron-electron interaction on electr...
The Coulomb interaction and the correlation of a remote electron with a single layer of graphene is ...
International audienceIn this joint experimental and theoretical work, we investigate collective ele...
The many-body correction to the band structure of a quasi-free-standing graphene layer is obtained w...
The relation between the energy and momentum of plasmarons in bilayer graphene is investigated withi...
The interaction between electrons and plasmons in trilayer graphene is investigated within the Overh...
A hallmark of graphene is its unusual conical band structure that leads to a zero-energy band gap at...
A hallmark of graphene is its unusual conical band structure that leads to a zero-energy band gap at...
We have investigated the plasmon dispersion in quasi-free-standing monolayer graphene (QFMLG) and ep...
The effectively massless, relativistic behaviour of graphene's charge carriers—known as Dirac fermio...
Electron-plasmon coupling in graphene has been shown recently to give rise to a “plasmaron” quasipar...
We have determined the electronic bandstructure of clean and potassium-doped single layer graphene, ...
Journal ArticlePolarizability of noninteracting 2D Dirac electrons has a 1 1 / √qv-ω singularity at ...
http://arxiv.org/abs/0901.4528Plasmons in ordinary electron liquids are collective excitations whose...
Collective plasma excitations of optically dressed Dirac electrons in single and double graphene lay...
The goal of this master thesis is to investigate the eect of electron-electron interaction on electr...
The Coulomb interaction and the correlation of a remote electron with a single layer of graphene is ...
International audienceIn this joint experimental and theoretical work, we investigate collective ele...