Absorption, Photoluminescence and Resonant Rayleigh Scattering Probes of Condensed Microcavity Polaritons
arXiv:cond-mat/0608096 · doi:10.1103/PhysRevB.76.115326
Abstract
We investigate and compare different optical probes of a condensed state of microcavity polaritons in expected experimental conditions of non-resonant pumping. We show that the energy- and momentum-resolved resonant Rayleigh signal provide a distinctive probe of condensation as compared to, e.g., photoluminescence emission. In particular, the presence of a collective sound mode both above and below the chemical potential can be observed, as well as features directly related to the density of states of particle-hole like excitations. Both resonant Rayleigh response and the absorption and photoluminescence, are affected by the presence of quantum well disorder, which introduces a distribution of oscillator strengths between quantum well excitons at a given energy and cavity photons at a given momentum. As we show, this distribution makes it important that in the condensed regime, scattering by disorder is taken into account to all orders. We show that, in the low density linear limit, this approach correctly describes inhomogeneous broadening of polaritons. In addition, in this limit, we extract a linear blue-shift of the lower polariton versus density, with a coefficient determined by temperature and by a characteristic disorder length.
16 pages, 11 figures; minor corrections
References in corpus (8)
- Non-equilibrium quantum condensation in an incoherently pumped dissipative system
- Quantum Degenerate Exciton-Polaritons in Thermal Equilibrium
- Collective coherence in planar semiconductor microcavities
- BCS-BEC crossover in a system of microcavity polaritons
- Polariton condensation with localised excitons and propagating photons
- Thermodynamics and Excitations of Condensed Polaritons in Disordered Microcavities
- Condensation of Cavity Polaritons in a Disordered Environment
- Statistics of microcavity polaritons under non-resonant excitation
Cited by in corpus (8)
- Quantum fluids of light
- Dark state semilocalization of quantum emitters in a cavity
- A quantum Langevin model for non-equilibrium condensation
- Coherence properties of the microcavity polariton condensate
- Large Random Arrowhead Matrices: Multifractality, Semi-Localization, and Protected Transport in Disordered Quantum Spins Coupled to a Cavity
- Probing the excitation spectrum of nonresonantly pumped polariton condensates
- Anderson localization of one-dimensional hybrid particles
- Phase diagram for condensation of microcavity polaritons: from theory to practice