The optical properties of graphene are made unique by the linear band structure and the vanishing density of states at the Dirac point. It has been proposed that even in the absence of a bandgap, a relaxation bottleneck at the Dirac point may allow for population inversion and lasing at arbitrarily long wavelengths. Furthermore, efficient carrier multiplication by impact ionization has been discussed in the context of light harvesting applications. However, all of these effects are difficult to test quantitatively by measuring the transient optical properties alone, as these only indirectly reflect the energy- and momentum-dependent carrier distributions. Here, we use time- and angle-resolved photoemission spectroscopy with femtosecond extr...
We study the broadband optical conductivity and ultrafast carrier dynamics of epitaxial graphene in ...
Graphene is an ideal material to study fundamental Coulomb- and phonon-induced carrier scattering pr...
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 ...
We have used time- and angle-resolved photoemission spectroscopy (tr-ARPES) to assess the influence ...
We review our recent time- and angle-resolved photoemission spectroscopy experiments, which measure ...
Charge carriers in graphene mimic two-dimensional massless Dirac fermions with linear energy dispers...
The pseudospin of Dirac electrons in graphene manifests itself in a peculiar momentum anisotropy for...
The dynamics of photo-generated electron-hole pairs in solids are dictated by many-body interactions...
[[abstract]]The ultrafast dynamics of photoexcited carriers closely depends on the excitation proces...
The chiral character of Dirac electrons in graphene manifests itself in a peculiar momentum anisotro...
The recent demonstration of saturable absorption and negative optical conductivity in the Terahertz ...
We study the broadband optical conductivity and ultrafast carrier dynamics of epitaxial graphene in ...
Graphene is an ideal material to study fundamental Coulomb- and phonon-induced carrier scattering pr...
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 ...
We have used time- and angle-resolved photoemission spectroscopy (tr-ARPES) to assess the influence ...
We review our recent time- and angle-resolved photoemission spectroscopy experiments, which measure ...
Charge carriers in graphene mimic two-dimensional massless Dirac fermions with linear energy dispers...
The pseudospin of Dirac electrons in graphene manifests itself in a peculiar momentum anisotropy for...
The dynamics of photo-generated electron-hole pairs in solids are dictated by many-body interactions...
[[abstract]]The ultrafast dynamics of photoexcited carriers closely depends on the excitation proces...
The chiral character of Dirac electrons in graphene manifests itself in a peculiar momentum anisotro...
The recent demonstration of saturable absorption and negative optical conductivity in the Terahertz ...
We study the broadband optical conductivity and ultrafast carrier dynamics of epitaxial graphene in ...
Graphene is an ideal material to study fundamental Coulomb- and phonon-induced carrier scattering pr...
Graphene is emerging as a viable alternative to conventional optoelectronic, plasmonic and nanophoto...