The semiconductor polariton laser promises a new source of coherent light, which, compared to conventional semiconductor photon lasers, has input-energy threshold orders of magnitude lower. However, intensity stability, a defining feature of a coherent state, has remained poor. Intensity noise many times the shot noise of a coherent state has persisted, attributed to multiple mechanisms that are difficult to separate in conventional polariton systems. The large intensity noise, in turn, limits the phase coherence. Thus, the capability of the polariton laser as a source of coherence light is limited. Here, we demonstrate a polariton laser with shot-noise-limited intensity stability, as expected from a fully coherent state. This stability is ...
Our review article is dedicated to the investigations of the Bose-Einstein Condensation (BEC) of the...
Polariton lasing is demonstrated on the zero-dimensional states of single GaAs=GaAlAs micropillar ca...
In a pump-probe experiment, we have been able to control, with phase-locked probe pulses, the ultraf...
The semiconductor polariton laser promises a new source of coherent light, which, compared to conven...
The semiconductor polariton laser promises a new source of coherent light, which, compared to conven...
In high finesse semiconductor microcavities containing quantum wells, photons emitted by the quantum...
A polariton laser [1] is a device which sits between conventional laser and conventional Bose-Einste...
Exciton-polariton lasers are operated in the strong light matter coupling regime. They promise low t...
Semiconductor microcavities (MCs) offer a unique system for producing novel types of low threshold l...
We study theoretically the second-order coherence g(2)(0) of light emitted by polariton lasers, i.e....
Despite their name polariton lasers do not rely on stimulated emission of cavity photons. The less s...
We demonstrate the role of longitudinal optical (LO)-phonon assisted polariton relaxation in reducin...
Polariton lasers [Phys. Rev. A 53, 4250 (1996), Phys. Rev. A 62, 063809 (2000)] are microcavities–ba...
International audienceThe non-linear emission from semiconductor microcavities in the strong couplin...
Under adequate conditions, cavity polaritons form a macroscopic coherent quantum state, known as pol...
Our review article is dedicated to the investigations of the Bose-Einstein Condensation (BEC) of the...
Polariton lasing is demonstrated on the zero-dimensional states of single GaAs=GaAlAs micropillar ca...
In a pump-probe experiment, we have been able to control, with phase-locked probe pulses, the ultraf...
The semiconductor polariton laser promises a new source of coherent light, which, compared to conven...
The semiconductor polariton laser promises a new source of coherent light, which, compared to conven...
In high finesse semiconductor microcavities containing quantum wells, photons emitted by the quantum...
A polariton laser [1] is a device which sits between conventional laser and conventional Bose-Einste...
Exciton-polariton lasers are operated in the strong light matter coupling regime. They promise low t...
Semiconductor microcavities (MCs) offer a unique system for producing novel types of low threshold l...
We study theoretically the second-order coherence g(2)(0) of light emitted by polariton lasers, i.e....
Despite their name polariton lasers do not rely on stimulated emission of cavity photons. The less s...
We demonstrate the role of longitudinal optical (LO)-phonon assisted polariton relaxation in reducin...
Polariton lasers [Phys. Rev. A 53, 4250 (1996), Phys. Rev. A 62, 063809 (2000)] are microcavities–ba...
International audienceThe non-linear emission from semiconductor microcavities in the strong couplin...
Under adequate conditions, cavity polaritons form a macroscopic coherent quantum state, known as pol...
Our review article is dedicated to the investigations of the Bose-Einstein Condensation (BEC) of the...
Polariton lasing is demonstrated on the zero-dimensional states of single GaAs=GaAlAs micropillar ca...
In a pump-probe experiment, we have been able to control, with phase-locked probe pulses, the ultraf...