The broadening of polariton lines by acoustic phonons is investigated in a semiconductor microcavity by means of interferometric correlation measurements with subpicosecond resolution. A decrease of the polariton-acoustic phonon coupling is clearly observed for the lower polariton branch as one approaches the resonance between exciton and photon states. This behavior cannot be explained in terms of a semiclassical linear dispersion theory but requires a full quantum description of the microcavity in the strong-coupling regime
Semiconductor microcavities are monolithic multilayer heterostructures grown by molecular beam epita...
Semiconductor microcavities have attracted much recent interest because they utilize simultaneously ...
Angle-resolved measurements show unexpected emission resonances of the polaritons in a semiconductor...
The broadening of polariton lines by acoustic phonons is investigated in a semiconductor microcavity...
We present an extension of the previous descriptions based on the Dynamics Controlled Truncation Sch...
This thesis presents experimental analysis of polariton dynamics in semiconductor microcavities, by ...
International audienceWe studied the intensity of resonant Raman scattering due to optical phonons i...
THESIS 6786Strong coupling between an atom and a cavity field is a well established phenomenon in th...
This work contains a theoretical analysis of the optical properties of semiconductor quantum wells e...
Ultrafast time-resolved measurements on a semiconductor microcavity distinguish polariton dynamics d...
International audienceSemiconductor microresonators embedding quantum wells can host tightly confine...
We describe recent continuous wave studies of stimulated polariton scattering in semiconductor micro...
We consider the elastic scattering of polaritons due to quantum well width or alloy composition fluc...
[[abstract]]As semiconductor fabrication technology developed, it became possible to fabricate high-...
Modifying the photonic environment of a semiconductor quantum well by embedding it in a high-reflect...
Semiconductor microcavities are monolithic multilayer heterostructures grown by molecular beam epita...
Semiconductor microcavities have attracted much recent interest because they utilize simultaneously ...
Angle-resolved measurements show unexpected emission resonances of the polaritons in a semiconductor...
The broadening of polariton lines by acoustic phonons is investigated in a semiconductor microcavity...
We present an extension of the previous descriptions based on the Dynamics Controlled Truncation Sch...
This thesis presents experimental analysis of polariton dynamics in semiconductor microcavities, by ...
International audienceWe studied the intensity of resonant Raman scattering due to optical phonons i...
THESIS 6786Strong coupling between an atom and a cavity field is a well established phenomenon in th...
This work contains a theoretical analysis of the optical properties of semiconductor quantum wells e...
Ultrafast time-resolved measurements on a semiconductor microcavity distinguish polariton dynamics d...
International audienceSemiconductor microresonators embedding quantum wells can host tightly confine...
We describe recent continuous wave studies of stimulated polariton scattering in semiconductor micro...
We consider the elastic scattering of polaritons due to quantum well width or alloy composition fluc...
[[abstract]]As semiconductor fabrication technology developed, it became possible to fabricate high-...
Modifying the photonic environment of a semiconductor quantum well by embedding it in a high-reflect...
Semiconductor microcavities are monolithic multilayer heterostructures grown by molecular beam epita...
Semiconductor microcavities have attracted much recent interest because they utilize simultaneously ...
Angle-resolved measurements show unexpected emission resonances of the polaritons in a semiconductor...