We have used time- and angle-resolved photoemission spectroscopy (tr-ARPES) to assess the influence of many-body interactions on the Dirac carrier dynamics in graphene. From the energy-dependence of the measured scattering rates we directly determine the imaginary part of the self-energy, visualizing the existence of a relaxation bottleneck associated with electron-phonon coupling. A comparison with static line widths obtained by high-resolution ARPES indicates that the dynamics of photo-excited carriers in graphene are solely determined by the equilibrium self-energy. Furthermore, the subtle interplay of different many-body interactions in graphene may allow for carrier multiplication, where the absorption of a single photon generates more...
Graphene is emerging as a viable alternative to conventional optoelectronic, plasmonic and nanophoto...
The optical properties of graphene are made unique by the linear band structure and the vanishing de...
The optical properties of graphene are made unique by the linear band structure and the vanishing de...
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 ...
The pseudospin of Dirac electrons in graphene manifests itself in a peculiar momentum anisotropy for...
Graphene is emerging as a viable alternative to conventional optoelectronic, plasmonic and nanophoto...
The ultrafast dynamics of excited carriers in graphene is closely linked to the Dirac spectrum and p...
The ultrafast dynamics of excited carriers in graphene is closely linked to the Dirac spectrum and p...
The ultrafast dynamics of excited carriers in graphene is closely linked to the Dirac spectrum and p...
The ultrafast dynamics of excited carriers in graphene is closely linked to the Dirac spectrum and p...
The ultrafast dynamics of excited carriers in graphene is closely linked to the Dirac spectrum and p...
The ultrafast dynamics of excited carriers in graphene is closely linked to the Dirac spectrum and p...
Graphene is emerging as a viable alternative to conventional optoelectronic, plasmonic and nanophoto...
The dynamics of photo-generated electron-hole pairs in solids are dictated by many-body interactions...
Graphene is emerging as a viable alternative to conventional optoelectronic, plasmonic and nanophoto...
The optical properties of graphene are made unique by the linear band structure and the vanishing de...
The optical properties of graphene are made unique by the linear band structure and the vanishing de...
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 ...
The pseudospin of Dirac electrons in graphene manifests itself in a peculiar momentum anisotropy for...
Graphene is emerging as a viable alternative to conventional optoelectronic, plasmonic and nanophoto...
The ultrafast dynamics of excited carriers in graphene is closely linked to the Dirac spectrum and p...
The ultrafast dynamics of excited carriers in graphene is closely linked to the Dirac spectrum and p...
The ultrafast dynamics of excited carriers in graphene is closely linked to the Dirac spectrum and p...
The ultrafast dynamics of excited carriers in graphene is closely linked to the Dirac spectrum and p...
The ultrafast dynamics of excited carriers in graphene is closely linked to the Dirac spectrum and p...
The ultrafast dynamics of excited carriers in graphene is closely linked to the Dirac spectrum and p...
Graphene is emerging as a viable alternative to conventional optoelectronic, plasmonic and nanophoto...
The dynamics of photo-generated electron-hole pairs in solids are dictated by many-body interactions...
Graphene is emerging as a viable alternative to conventional optoelectronic, plasmonic and nanophoto...
The optical properties of graphene are made unique by the linear band structure and the vanishing de...
The optical properties of graphene are made unique by the linear band structure and the vanishing de...