The effectively massless, relativistic behaviour of graphene's charge carriers—known as Dirac fermions—is a result of its unique electronic structure, characterized by conical valence and conduction bands that meet at a single point in momentum space (at the Dirac crossing energy). The study of many-body interactions amongst the charge carriers in graphene and related systems such as carbon nanotubes, fullerenes and graphite is of interest owing to their contribution to superconductivity and other exotic ground states in these systems. Here we show, using angle-resolved photoemission spectroscopy, that electron–plasmon coupling plays an unusually strong role in renormalizing the bands around the Dirac crossing energy—analogous to mass renor...
Angle-resolved photoemission spectroscopy (ARPES) is a powerful experimental technique for directly ...
We study interacting Dirac quasiparticles in disordered graphene and find that an interplay between ...
A remarkable manifestation of the quantum character of electrons in matter is offered by graphene, a...
The effectively massless, relativistic behaviour of graphene's charge carriers—known as Dirac fermio...
We have determined the electronic bandstructure of clean and potassium-doped single layer graphene, ...
The Landau-Fermi liquid picture for quasiparticles assumes that charge carriers are dressed by many-...
A number of interesting properties of graphene and graphite are postulated to derive from the peculi...
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, ...
We have used time- and angle-resolved photoemission spectroscopy (tr-ARPES) to assess the influence ...
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...
A hallmark of graphene is its unusual conical band structure that leads to a zero-energy band gap at...
Single-layer graphene has been widely researched in recent years due to its perceived technological ...
The nature of the coupling leading to superconductivity in layered materials such as high-Tc superco...
Angle-resolved photoemission spectroscopy (ARPES) is a powerful experimental technique for directly ...
We study interacting Dirac quasiparticles in disordered graphene and find that an interplay between ...
A remarkable manifestation of the quantum character of electrons in matter is offered by graphene, a...
The effectively massless, relativistic behaviour of graphene's charge carriers—known as Dirac fermio...
We have determined the electronic bandstructure of clean and potassium-doped single layer graphene, ...
The Landau-Fermi liquid picture for quasiparticles assumes that charge carriers are dressed by many-...
A number of interesting properties of graphene and graphite are postulated to derive from the peculi...
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, ...
We have used time- and angle-resolved photoemission spectroscopy (tr-ARPES) to assess the influence ...
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...
A hallmark of graphene is its unusual conical band structure that leads to a zero-energy band gap at...
Single-layer graphene has been widely researched in recent years due to its perceived technological ...
The nature of the coupling leading to superconductivity in layered materials such as high-Tc superco...
Angle-resolved photoemission spectroscopy (ARPES) is a powerful experimental technique for directly ...
We study interacting Dirac quasiparticles in disordered graphene and find that an interplay between ...
A remarkable manifestation of the quantum character of electrons in matter is offered by graphene, a...