Elucidating the carrier density at which strongly bound excitons dissociate into a plasma of uncorrelated electron-hole pairs is a central topic in the many-body physics of semiconductors. However, there is a lack of information on the high-density response of excitons absorbing in the near-to-mid ultraviolet, due to the absence of suitable experimental probes in this elusive spectral range. Here, we present a unique combination of many-body perturbation theory and state-of-the-art ultrafast broadband ultraviolet spectroscopy to unveil the interplay between the ultraviolet-absorbing two-dimensional excitons of anatase TiO2 and a sea of electron-hole pairs. We discover that the critical density for the exciton Mott transition in this materia...
Controlling the excitonic optical properties of room temperature semiconductors using time-dependent...
Because of rapid progress in the synthesis methods, TiO2-based nanomaterials are nowadays the object...
The quasi-particle band structure, carrier mobility, and optical response of atomic-thin TiO2 nanosh...
Elucidating the carrier density at which strongly bound excitons dissociate into a plasma of uncorre...
Anatase TiO2 is among the most studied materials for light-energy conversion applications, but the n...
Bound electronic excitations play a major role in the electrodynamics of insulators and are typicall...
The coherent manipulation of excitons in bulk semiconductors via the lattice degrees of freedom is k...
Anatase TiO2 is among the most studied materials for light-energy conversion applications, but the n...
Anatase TiO₂ is among the most studied materials for light-energy conversion applications, but the ...
International audienceTitanium dioxide (TiO2) has rich physical properties with potential implicatio...
International audienceTitanium dioxide (TiO2) has rich physical properties with potential implicatio...
The strength of the electron-hole interaction in bulk semiconductors is not only determined by the d...
The optical bandgap of anatase TiO2 nanoparticles is dominated by bulk absorption bands in the deep-...
Controlling the excitonic optical properties of room temperature semiconductors using time-dependent...
One challenge of condensed matter physics is to explain the complex behaviour of the material world....
Controlling the excitonic optical properties of room temperature semiconductors using time-dependent...
Because of rapid progress in the synthesis methods, TiO2-based nanomaterials are nowadays the object...
The quasi-particle band structure, carrier mobility, and optical response of atomic-thin TiO2 nanosh...
Elucidating the carrier density at which strongly bound excitons dissociate into a plasma of uncorre...
Anatase TiO2 is among the most studied materials for light-energy conversion applications, but the n...
Bound electronic excitations play a major role in the electrodynamics of insulators and are typicall...
The coherent manipulation of excitons in bulk semiconductors via the lattice degrees of freedom is k...
Anatase TiO2 is among the most studied materials for light-energy conversion applications, but the n...
Anatase TiO₂ is among the most studied materials for light-energy conversion applications, but the ...
International audienceTitanium dioxide (TiO2) has rich physical properties with potential implicatio...
International audienceTitanium dioxide (TiO2) has rich physical properties with potential implicatio...
The strength of the electron-hole interaction in bulk semiconductors is not only determined by the d...
The optical bandgap of anatase TiO2 nanoparticles is dominated by bulk absorption bands in the deep-...
Controlling the excitonic optical properties of room temperature semiconductors using time-dependent...
One challenge of condensed matter physics is to explain the complex behaviour of the material world....
Controlling the excitonic optical properties of room temperature semiconductors using time-dependent...
Because of rapid progress in the synthesis methods, TiO2-based nanomaterials are nowadays the object...
The quasi-particle band structure, carrier mobility, and optical response of atomic-thin TiO2 nanosh...