| Literature DB >> 26153979 |
Alexey V Kavokin1,2,3, Alexandra S Sheremet2,4, Ivan A Shelykh5,6,7, Pavlos G Lagoudakis1, Yuri G Rubo8.
Abstract
Exciton-polaritons are mixed light-matter quasiparticles. We have developed a statistical model describing stochastic exciton-photon transitions within a condensate of exciton polaritons. We show that the exciton-photon correlator depends on the rate of incoherent exciton-photon transformations in the condensate. We discuss implications of this effect for the quantum statistics of photons emitted by polariton lasers.Entities:
Year: 2015 PMID: 26153979 PMCID: PMC4495551 DOI: 10.1038/srep12020
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1(Color online) The schematic of photon-exciton interaction in the weak coupling (upper panel) and strong coupling (lower panel) regimes.
While in the weak coupling regime real absorption and emission of photons by excitons takes place, the strong coupling is characterised by appearance of a superposition exciton-photon state.
Figure 2(Color online) The time evolution of the correlators G(t) (black), g(t) (blue) and g2(t) = g2(t) (red).
There is initially N(0) = 10 lower-branch polaritons in the coherent (solid lines) and and the Fock (dashed lines) states (see text). Infinite lifetimes of excitons and photons τ = τ = ∞ are assumed.
Figure 3(Color online) Showing evolution of some diagonal elements P(n, n, t), as well as evolution of the average number of particles N and the energy per particle on insets.
The panel (a) corresponds to the finite time of the exciton-photon conversion τ = 5 ps, while the behavior in the absence of stochastic conversion is shown in the panel (b) The polariton condensate is initially in the coherent state with N = 10. The life-times of excitons and photons are τ = 40 ps and τ = 10 ps.