Strong coupling is demonstrated in monolithic ZnSe-based microcavities. Under nonresonant excitation the polariton dispersion has been investigated in dependence on the photon-exciton detuning for different excitation densities at low temperatures. For zero detuning indications of a polariton lasing threshold are observed like a k-space and energy dispersion narrowing of the lower polariton branch with increasing excitation density. Furthermore, it is observed that this effect is hampered for measurements at negative detunings as a result of the less effective polariton relaxation to the ground state. Latter results in the formation of a discrete polariton dis...
We report on the occupation of the lower exciton–polariton branch in a ZnO-based microcavity as a fu...
International audienceThe strong coupling regime in a ZnO microcavity is investigated through room t...
International audienceZnO is a wide bandgap semiconductor with strong excitonic properties, in parti...
International audienceWe demonstrate polariton lasing in a bulk ZnO planar microcavity under non-res...
This thesis presents the design, fabrication and experimental analysis of ZnSe based microcavities. ...
Semiconductor microcavities are monolithic multilayer heterostructures grown by molecular beam epita...
International audienceWe report on the realization of monolithic, i.e. fully epitaxial ZnSe-based mi...
National audienceSemiconductor-based microcavities appear as a prolific system for studying light-ma...
Semiconductor microcavities have attracted much recent interest because they utilize simultaneously ...
International audiencePolariton relaxation mechanisms are analyzed experimentally and theoretically ...
The strong coupling of excitons and photons inside a semiconductor microcavity forms a trap in k-spa...
The strong coupling regime in a ZnO microcavity is investigated through room temperature photolumine...
International audienceZnO is a wide bandgap semiconductor with strong excitonic properties, in parti...
We demonstrate the role of longitudinal optical (LO)-phonon assisted polariton relaxation in reducin...
International audienceZnO is a wide bandgap semiconductor with strong excitonic properties, in parti...
We report on the occupation of the lower exciton–polariton branch in a ZnO-based microcavity as a fu...
International audienceThe strong coupling regime in a ZnO microcavity is investigated through room t...
International audienceZnO is a wide bandgap semiconductor with strong excitonic properties, in parti...
International audienceWe demonstrate polariton lasing in a bulk ZnO planar microcavity under non-res...
This thesis presents the design, fabrication and experimental analysis of ZnSe based microcavities. ...
Semiconductor microcavities are monolithic multilayer heterostructures grown by molecular beam epita...
International audienceWe report on the realization of monolithic, i.e. fully epitaxial ZnSe-based mi...
National audienceSemiconductor-based microcavities appear as a prolific system for studying light-ma...
Semiconductor microcavities have attracted much recent interest because they utilize simultaneously ...
International audiencePolariton relaxation mechanisms are analyzed experimentally and theoretically ...
The strong coupling of excitons and photons inside a semiconductor microcavity forms a trap in k-spa...
The strong coupling regime in a ZnO microcavity is investigated through room temperature photolumine...
International audienceZnO is a wide bandgap semiconductor with strong excitonic properties, in parti...
We demonstrate the role of longitudinal optical (LO)-phonon assisted polariton relaxation in reducin...
International audienceZnO is a wide bandgap semiconductor with strong excitonic properties, in parti...
We report on the occupation of the lower exciton–polariton branch in a ZnO-based microcavity as a fu...
International audienceThe strong coupling regime in a ZnO microcavity is investigated through room t...
International audienceZnO is a wide bandgap semiconductor with strong excitonic properties, in parti...