Polaronic polariton quasiparticles in a dark excitonic medium
arXiv:2312.00985 · doi:10.1103/PhysRevB.109.195432
Abstract
Exciton polaritons are hybrid particles of excitons (bound electron-hole pairs) and cavity photons, which are renowned for displaying Bose Einstein condensation and other coherent phenomena at elevated temperatures. However, their formation in semiconductor microcavities is often accompanied by the appearance of an incoherent bath of optically dark excitonic states that can interact with polaritons via their matter component. Here we show that the presence of such a dark excitonic medium can "dress" polaritons with density fluctuations to form coherent polaron-like quasiparticles, thus fundamentally modifying their character. We employ a many-body Green's function approach that naturally incorporates correlations beyond the standard mean-field theories applied to this system. With increasing exciton density, we find a reduction in the light-matter coupling that arises from the polaronic dressing cloud rather than any saturation induced by the fermionic constituents of the exciton. In particular, we observe the strongest effects when the spin of the polaritons is opposite that of the excitonic medium. In this case, the coupling to light generates an additional polaron quasiparticle - the biexciton polariton - which emerges due to the dark-exciton counterpart of a polariton Feshbach resonance. Our results can explain recent experiments on polariton interactions in two-dimensional semiconductors and potentially provide a route to tailoring the properties of exciton polaritons and their correlations.
21 pages, 9 figures
References in corpus (18)
- Quantum fluids of light
- Observation of Superfluidity of Polaritons in Semiconductor Microcavities
- Quantised Vortices in an Exciton-Polariton Fluid
- Exciton-polariton condensates
- Many-Body Theory of Trion Absorption Features in Two-Dimensional Semiconductors
- Analysis of the exciton-exciton interaction in semiconductor quantum wells
- Polaritonic Feshbach Resonance
- All-optical flow control of a polariton condensate using non-resonant excitation
- Coherent and incoherent aspects of polariton dynamics in semiconductor microcavities
- Crossover from exciton polarons to trions in doped two-dimensional semiconductors at finite temperature
- Probing many-body correlations using quantum-cascade correlation spectroscopy
- Exact Quantum Virial Expansion for the Optical Response of Doped Two-Dimensional Semiconductors
- Trion resonance in polariton-electron scattering
- The Fate of the Upper Polariton: Breakdown of the Quasiparticle Picture in the Continuum
- Effective attractive polariton-polariton interaction mediated by the exciton reservoir
- Directional planar antennae in polariton condensates
- Occupancy-driven Zeeman suppression and inversion in trapped polariton condensates
- Quasi-equilibrium polariton condensates in the non-linear regime and beyond