Microscopic calculation of polariton scattering in semiconductor microcavities
arXiv:2109.11992 · doi:10.1103/PhysRevB.104.245404
Abstract
Recent experiments in exciton-polariton systems have provided high-precision measurements of the value of the polariton-polariton interaction constant, which is a key parameter that governs the nonlinear dynamics of polariton condensates and potentially enables quantum correlated polaritons. Yet, until now, this parameter has only been addressed theoretically using perturbative treatments or approximations that do not include the composite nature of the excitons. Here, we use a recently developed microscopic description of polaritons involving electrons, holes, and photons, where the interactions between charged particles are assumed to be highly screened. Within this model, we perform an exact four-body calculation of the spin-polarized polariton-polariton and polariton-exciton interaction constants. In the limit of weak light-matter coupling relevant to an atomically thin semiconductor in a microcavity, we obtain excellent agreement with a recently proposed universal form of low-energy polariton-polariton scattering [O. Bleu et al., Phys. Rev. Res. 2, 043185 (2020)]. At stronger light-matter coupling, of relevance to multilayer microcavities, we observe that the interaction constant increases towards that predicted by the Born approximation. We show that in all regimes of interest the interaction constant can be accurately obtained from the exciton-exciton scattering phase shift at negative collision energy, and we argue that this has important implications for interactions in other systems featuring strong light-matter coupling.
16 pages, 12 figures
References in corpus (11)
- Quantum fluids of light
- Tightly bound excitons in monolayer WSe2
- Strong light-matter coupling in two-dimensional atomic crystals
- Observation of Superfluidity of Polaritons in Semiconductor Microcavities
- Excitations in a non-equilibrium Bose-Einstein condensate of exciton-polaritons
- Analysis of the exciton-exciton interaction in semiconductor quantum wells
- Polariton-polariton scattering: exact results through a novel approach
- Three-body problem in a two-dimensional Fermi gas
- Quantum fluctuations in a strongly interacting Bardeen-Cooper-Schrieffer polariton condensate at thermal equilibrium
- The 3-body Coulomb problem
- Interplay between polarization and quantum correlations of confined polaritons
Cited by in corpus (12)
- Rydberg Exciton-Polaritons in a Magnetic Field
- Bogoliubov excitations of a polariton condensate in dynamical equilibrium with an incoherent reservoir
- Trion resonance in polariton-electron scattering
- Polaronic polariton quasiparticles in a dark excitonic medium
- Microscopic theory of polariton-polariton interactions
- Rydberg excitons and polaritons in monolayer transition metal dichalcogenides in a magnetic field
- Feshbach Resonances in Exciton-Charge-Carrier Scattering in Semiconductor Bilayers
- Resonantly enhanced superconductivity mediated by spinor condensates
- Quantum coherent states of mass-imbalanced electron-hole system within optical microcavities
- Quasi-equilibrium polariton condensates in the non-linear regime and beyond
- Light-enhanced dipolar interactions between exciton polaritons
- BCS-BEC crossover of polaritonic condensates in mass-imbalanced semimetal/semiconductor microcavities