Light sources on the scale of single molecules can be addressed and characterized at their proper sub-nanometer scale by scanning tunneling microscopy-induced luminescence (STML). Such a source can be driven by defined short charge pulses while the luminescence is detected with sub-nanosecond resolution. We introduce an approach to concurrently image the molecular emitter, which is based on an individual defect, with its local environment along with its luminescence dynamics at a resolution of a billion frames per second. The observed dynamics can be assigned to the single electron capture occurring in the low-nanosecond regime. While the emitter's location on the surface remains fixed, the scanning of the tip modifies the energy landscape ...
Scanning Tunneling Microscope (STM) has become a powerful tool in nanoscience for imaging, manipulat...
Tracking electron motion in molecules is the key to understanding and controlling chemical transform...
This thesis treats scanning tunneling luminescence (STL) investigations of semiconductor nanostructu...
Light sources on the scale of single molecules can be addressed and characterized at their proper su...
Excitons and their constituent charge carriers play the central role in electroluminescence mechanis...
Exciton creation and annihilation by charges are crucial processes for technologies relying on charg...
The conversion of electric power to light is an important scientific and technological challenge. Ad...
The efficiency and peculiarities of processes such as surface adsorption or electron-to-photon energ...
Single-molecule detection is a powerful method used to distinguish different species and follow time...
Room-temperature light emission from single chemisorbed perylene based molecules adsorbed on silicon...
The ability to directly image ultrafast phenomena with nanometer spatial resolution is essential to ...
Watching a single molecule move on its intrinsic timescale has been one of the central goals of mode...
Light absorption and emission have their origins in fast atomic-scale phenomena. To characterize the...
The scanning tunneling microscopy (STM) of single molecules has become a prominent experimental meth...
The miniaturization of semiconductor devices to scales where small numbers of dopants can control de...
Scanning Tunneling Microscope (STM) has become a powerful tool in nanoscience for imaging, manipulat...
Tracking electron motion in molecules is the key to understanding and controlling chemical transform...
This thesis treats scanning tunneling luminescence (STL) investigations of semiconductor nanostructu...
Light sources on the scale of single molecules can be addressed and characterized at their proper su...
Excitons and their constituent charge carriers play the central role in electroluminescence mechanis...
Exciton creation and annihilation by charges are crucial processes for technologies relying on charg...
The conversion of electric power to light is an important scientific and technological challenge. Ad...
The efficiency and peculiarities of processes such as surface adsorption or electron-to-photon energ...
Single-molecule detection is a powerful method used to distinguish different species and follow time...
Room-temperature light emission from single chemisorbed perylene based molecules adsorbed on silicon...
The ability to directly image ultrafast phenomena with nanometer spatial resolution is essential to ...
Watching a single molecule move on its intrinsic timescale has been one of the central goals of mode...
Light absorption and emission have their origins in fast atomic-scale phenomena. To characterize the...
The scanning tunneling microscopy (STM) of single molecules has become a prominent experimental meth...
The miniaturization of semiconductor devices to scales where small numbers of dopants can control de...
Scanning Tunneling Microscope (STM) has become a powerful tool in nanoscience for imaging, manipulat...
Tracking electron motion in molecules is the key to understanding and controlling chemical transform...
This thesis treats scanning tunneling luminescence (STL) investigations of semiconductor nanostructu...