We study the ultrafast quasiparticle dynamics in and below the ZnO conduction band using femtosecond time-resolved two-photon photoelectron spectroscopy. Above band gap excitation causes hot electron relaxation by electron-phonon scattering down to the Fermi level EF followed by ultrafast (200 fs) formation of a surface exciton (SX). Transient screening of the Coulomb interaction reduces the SX formation probability at high excitation densities near the Mott limit. Located just below the surface, the SX are stable with regard to hydrogen-induced work function modifications and thus the ideal prerequisite for resonant energy transfer applications
The ultrafast photoinjection and subsequent relaxation steps of the indoline dye D149 were investiga...
The charge dynamics at the surface of the transparent conducting oxide and photoanode material ZnO a...
Time-resolved sum frequency generation is an established tool to investigate the ultrafast vibration...
We study the ultrafast quasiparticle dynamics in and below the ZnO conduction band using femtosecond...
In recent years, band bending at oxide semiconductor surfaces induced by chemical doping or electric...
Shallow donors in semiconductors are known to form impurity bands that induce metallic conduction at...
Band bending at semiconductor surfaces induced by chemical doping or electric fields can create meta...
Euan Hendry, M. Koeberg, and M. Bonn, Physical Review B, Vol. 76, article 045214 (2007). "Copyright ...
In recent years, band bending at oxide semiconductor surfaces induced by chemical doping or electric...
We report photoluminescence (PL) studies of the surface exciton peak in ZnO nanostructures at ∼3.367...
Many linked processes occur concurrently in strongly excited semiconductors, such as interband and i...
The ultrafast photoinjection and subsequent relaxation steps of the indoline dye D149 were investiga...
The optical properties of a high quality bulk ZnO, thermally post treated in a forming gas environme...
This work focuses on fundamental processes which influence the efficiencies of organic solar cells a...
Photoluminescence (PL) studies of the surface exciton peak in ZnO nanostructures at ∼3.367 eV are re...
The ultrafast photoinjection and subsequent relaxation steps of the indoline dye D149 were investiga...
The charge dynamics at the surface of the transparent conducting oxide and photoanode material ZnO a...
Time-resolved sum frequency generation is an established tool to investigate the ultrafast vibration...
We study the ultrafast quasiparticle dynamics in and below the ZnO conduction band using femtosecond...
In recent years, band bending at oxide semiconductor surfaces induced by chemical doping or electric...
Shallow donors in semiconductors are known to form impurity bands that induce metallic conduction at...
Band bending at semiconductor surfaces induced by chemical doping or electric fields can create meta...
Euan Hendry, M. Koeberg, and M. Bonn, Physical Review B, Vol. 76, article 045214 (2007). "Copyright ...
In recent years, band bending at oxide semiconductor surfaces induced by chemical doping or electric...
We report photoluminescence (PL) studies of the surface exciton peak in ZnO nanostructures at ∼3.367...
Many linked processes occur concurrently in strongly excited semiconductors, such as interband and i...
The ultrafast photoinjection and subsequent relaxation steps of the indoline dye D149 were investiga...
The optical properties of a high quality bulk ZnO, thermally post treated in a forming gas environme...
This work focuses on fundamental processes which influence the efficiencies of organic solar cells a...
Photoluminescence (PL) studies of the surface exciton peak in ZnO nanostructures at ∼3.367 eV are re...
The ultrafast photoinjection and subsequent relaxation steps of the indoline dye D149 were investiga...
The charge dynamics at the surface of the transparent conducting oxide and photoanode material ZnO a...
Time-resolved sum frequency generation is an established tool to investigate the ultrafast vibration...