A hallmark of graphene is its unusual conical band structure that leads to a zero-energy band gap at a single Dirac crossing point. By measuring the spectral function of charge carriers in quasi-freestanding graphene with angle-resolved photoemission spectroscopy, we showed that at finite doping, this well-known linear Dirac spectrum does not provide a full description of the charge-carrying excitations. We observed composite “plasmaron” particles, which are bound states of charge carriers with plasmons, the density oscillations of the graphene electron gas. The Dirac crossing point is resolved into three crossings: the first between pure charge bands, the second between pure plasmaron bands, and the third a ring-shaped crossing between cha...
We have used time- and angle-resolved photoemission spectroscopy (tr-ARPES) to assess the influence ...
A remarkable manifestation of the quantum character of electrons in matter is offered by graphene, a...
Charge carriers in bilayer graphene are widely believed to be massive Dirac fermions that have a ban...
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 determined the electronic bandstructure of clean and potassium-doped single layer graphene, ...
Electron-plasmon coupling in graphene has been shown recently to give rise to a “plasmaron” quasipar...
Electron-electron interaction is fundamental in condensed matter physics and can lead to composite q...
The effectively massless, relativistic behaviour of graphene's charge carriers—known as Dirac fermio...
Abstract. We have determined the electronic bandstructure of clean and potassium-doped single layer ...
Collective plasma excitations of optically dressed Dirac electrons in single and double graphene lay...
The many-body correction to the band structure of a quasi-free-standing graphene layer is obtained w...
A number of interesting properties of graphene and graphite are postulated to derive from the peculi...
The relation between the energy and momentum of plasmarons in bilayer graphene is investigated withi...
A remarkable manifestation of the quantum character of electrons in matter is offered by graphene, a...
We have used time- and angle-resolved photoemission spectroscopy (tr-ARPES) to assess the influence ...
A remarkable manifestation of the quantum character of electrons in matter is offered by graphene, a...
Charge carriers in bilayer graphene are widely believed to be massive Dirac fermions that have a ban...
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 determined the electronic bandstructure of clean and potassium-doped single layer graphene, ...
Electron-plasmon coupling in graphene has been shown recently to give rise to a “plasmaron” quasipar...
Electron-electron interaction is fundamental in condensed matter physics and can lead to composite q...
The effectively massless, relativistic behaviour of graphene's charge carriers—known as Dirac fermio...
Abstract. We have determined the electronic bandstructure of clean and potassium-doped single layer ...
Collective plasma excitations of optically dressed Dirac electrons in single and double graphene lay...
The many-body correction to the band structure of a quasi-free-standing graphene layer is obtained w...
A number of interesting properties of graphene and graphite are postulated to derive from the peculi...
The relation between the energy and momentum of plasmarons in bilayer graphene is investigated withi...
A remarkable manifestation of the quantum character of electrons in matter is offered by graphene, a...
We have used time- and angle-resolved photoemission spectroscopy (tr-ARPES) to assess the influence ...
A remarkable manifestation of the quantum character of electrons in matter is offered by graphene, a...
Charge carriers in bilayer graphene are widely believed to be massive Dirac fermions that have a ban...