A polariton relaxation bottleneck is observed in angle-resolved measurements of photoluminescence emission from a semiconductor microcavity. For low power laser excitation, low k polariton states are found to have a very small population relative to those at high k. The bottleneck is found to be strongly suppressed at higher powers in the regime of superlinear emission of the lower polariton states. Evidence for the important role of carrier-carrier scattering in suppression of the bottleneck is presented
Organic semiconductor microcavities forming strongly coupled exciton-polaritons are interesting syst...
This thesis presents experimental analysis of polariton dynamics in semiconductor microcavities, by ...
Strong coupling is demonstrated in monolithic ZnSe-based microcavities. Under nonresonant ...
A polariton relaxation bottleneck is observed in angle-resolved measurements of photoluminescence em...
We use angular-resolved photoluminescence excitation spectroscopy to probe energy relaxation towards...
Time resolved photoluminescence in semiconductor microcavities in the strong coupling regime both fo...
The issue of polariton lasing in n-doped microcavities is addressed. We show theoretically that the ...
The relaxation bottleneck present in the dispersion relation of exciton polaritons in semiconductor ...
Polariton microemitters are semiconductor devices that take advantage of the strong coupling of ligh...
We show theoretically that the introduction of a cold electron gas into quantum microcavities induce...
We study the effects of electron-polariton scattering in a semiconductor microcavity that allows con...
We present a theoretical model that allows us to describe the polariton dynamics in a semiconductor ...
We find strong influence of final-state stimulation on the time-resolved light emission dynamics fro...
Organic semiconductor microcavities forming strongly-coupled exciton polaritons are interesting syst...
Laser-like emissions from semiconductor microcavities at low temperature have attracted considerable...
Organic semiconductor microcavities forming strongly coupled exciton-polaritons are interesting syst...
This thesis presents experimental analysis of polariton dynamics in semiconductor microcavities, by ...
Strong coupling is demonstrated in monolithic ZnSe-based microcavities. Under nonresonant ...
A polariton relaxation bottleneck is observed in angle-resolved measurements of photoluminescence em...
We use angular-resolved photoluminescence excitation spectroscopy to probe energy relaxation towards...
Time resolved photoluminescence in semiconductor microcavities in the strong coupling regime both fo...
The issue of polariton lasing in n-doped microcavities is addressed. We show theoretically that the ...
The relaxation bottleneck present in the dispersion relation of exciton polaritons in semiconductor ...
Polariton microemitters are semiconductor devices that take advantage of the strong coupling of ligh...
We show theoretically that the introduction of a cold electron gas into quantum microcavities induce...
We study the effects of electron-polariton scattering in a semiconductor microcavity that allows con...
We present a theoretical model that allows us to describe the polariton dynamics in a semiconductor ...
We find strong influence of final-state stimulation on the time-resolved light emission dynamics fro...
Organic semiconductor microcavities forming strongly-coupled exciton polaritons are interesting syst...
Laser-like emissions from semiconductor microcavities at low temperature have attracted considerable...
Organic semiconductor microcavities forming strongly coupled exciton-polaritons are interesting syst...
This thesis presents experimental analysis of polariton dynamics in semiconductor microcavities, by ...
Strong coupling is demonstrated in monolithic ZnSe-based microcavities. Under nonresonant ...