We present a joint theory-experiment study on ultrafast photoluminescence from photoexcited graphene. On the basis of a microscopic theory, we reveal two distinct mechanisms behind the occurring photoluminescence: besides the well-known incoherent contribution driven by nonequilibrium carrier occupations, we found a coherent part that spectrally shifts with the excitation energy. In our experiments, we demonstrate for the first time the predicted appearance and spectral shift of the coherent photoluminescence
The origin of near-infrared (NIR) luminescence from graphene oxide (GO) is investigated by photolumi...
This dissertation describes the response of graphene and graphene fragments to ultrafast optical pul...
In materials with strong electron-electron interactions, photoexcitation can trigger a cascade in wh...
We present a joint theory-experiment study on ultrafast photoluminescence from photoexcited graphene...
We present a joint theory-experiment study on ultrafast photoluminescence from photoexcited graphene...
We present a joint theory-experiment study on ultrafast photoluminescence from photo-excited graphen...
Upon femtosecond laser irradiation, a bright, broadband photoluminescence is observed from graphene ...
Upon femtosecond laser irradiation, a bright, broadband photoluminescence is observed from graphene ...
This work reports on investigations of carrier dynamics in graphene after optical excitation by an u...
Symposium P: Semiconductor Lighting and Displays: Session P4: GaN II - ICMAT15-A-3420 (Invited Speak...
We use subpicosecond time-resolved photoluminescence measurements to study the nature of photolumine...
Graphene is in the focus of research due to its unique electronic and optical properties. Intrinsic ...
The conversion of light into free electron–hole pairs constitutes the key process in the fields of p...
The conversion of light into free electron–hole pairs constitutes the key process in the fields of p...
We have characterized the carrier dynamics of the excitonic emission emerging from a monolayer of gr...
The origin of near-infrared (NIR) luminescence from graphene oxide (GO) is investigated by photolumi...
This dissertation describes the response of graphene and graphene fragments to ultrafast optical pul...
In materials with strong electron-electron interactions, photoexcitation can trigger a cascade in wh...
We present a joint theory-experiment study on ultrafast photoluminescence from photoexcited graphene...
We present a joint theory-experiment study on ultrafast photoluminescence from photoexcited graphene...
We present a joint theory-experiment study on ultrafast photoluminescence from photo-excited graphen...
Upon femtosecond laser irradiation, a bright, broadband photoluminescence is observed from graphene ...
Upon femtosecond laser irradiation, a bright, broadband photoluminescence is observed from graphene ...
This work reports on investigations of carrier dynamics in graphene after optical excitation by an u...
Symposium P: Semiconductor Lighting and Displays: Session P4: GaN II - ICMAT15-A-3420 (Invited Speak...
We use subpicosecond time-resolved photoluminescence measurements to study the nature of photolumine...
Graphene is in the focus of research due to its unique electronic and optical properties. Intrinsic ...
The conversion of light into free electron–hole pairs constitutes the key process in the fields of p...
The conversion of light into free electron–hole pairs constitutes the key process in the fields of p...
We have characterized the carrier dynamics of the excitonic emission emerging from a monolayer of gr...
The origin of near-infrared (NIR) luminescence from graphene oxide (GO) is investigated by photolumi...
This dissertation describes the response of graphene and graphene fragments to ultrafast optical pul...
In materials with strong electron-electron interactions, photoexcitation can trigger a cascade in wh...