Microscopic description of exciton-polaritons in microcavities
arXiv:1902.07966 · doi:10.1103/PhysRevResearch.1.033120
Abstract
We investigate the microscopic description of exciton-polaritons that involves electrons, holes and photons within a two-dimensional microcavity. We show that in order to recover the simplified exciton-photon model that is typically used to describe polaritons, one must correctly define the exciton-photon detuning and exciton-photon (Rabi) coupling in terms of the bare microscopic parameters. For the case of unscreened Coulomb interactions, we find that the exciton-photon detuning is strongly shifted from its bare value in a manner akin to renormalization in quantum electrodynamics. Within the renormalized theory, we exactly solve the problem of a single exciton-polariton for the first time and obtain the full spectral response of the microcavity. In particular, we find that the electron-hole wave function of the polariton can be significantly modified by the very strong Rabi couplings achieved in current experiments. Our microscopic approach furthermore allows us to obtain the effective interaction between identical polaritons for any light-matter coupling. Crucially, we show that the standard treatment of polariton-polariton interactions in the very strong coupling regime is incorrect, since it neglects the light-induced modification of the exciton size and thus greatly overestimates the effect of Pauli exclusion on the Rabi coupling, i.e., the saturation of exciton oscillator strength. Our findings thus provide the foundations for understanding and characterizing exciton-polariton systems across the whole range of polariton densities.
15 pages, 5 figures. Accepted version with Figure 4(a,b) updated after correcting typo in code
References in corpus (24)
- Excitons in atomically thin transition metal dichalcogenides
- Quantum fluids of light
- Polaritons in layered 2D materials
- Strong light-matter coupling in two-dimensional atomic crystals
- Fermi polaron-polaritons in charge-tunable atomically thin semiconductors
- Giant Rydberg Excitons in Cuprous Oxide
- Input-output theory of cavities in the ultra-strong coupling regime: the case of a time-independent vacuum Rabi frequency
- Quantum correlations of confined exciton-polaritons
- Quantum-correlated photons from semiconductor cavity polaritons
- Collective coherence in planar semiconductor microcavities
- Creation of orbital angular momentum states with chiral polaritonic lenses
- Direct measurement of polariton-polariton interaction strength in the Thomas-Fermi regime of exciton-polariton condensation
- Diatomic molecules in ultracold Fermi gases - Novel composite bosons
- Dark Solitons in Waveguide Polariton Fluids Shed Light on Interaction Constants
- Observation of Rydberg exciton polaritons and their condensate in a perovskite cavity
- Scaling laws of Rydberg excitons
- A BCS wavefunction approach to the BEC-BCS crossover of exciton-polariton condensates
- Experimental verification of the very strong coupling regime in a GaAs quantum well microcavity
- Nonlinear optics in the fractional quantum Hall regime
- Polariton-polariton scattering: exact results through a novel approach
- Highly excited exciton-polariton condensates
- Light-matter interaction in doped microcavities
- Microscopic Theory of Equilibrium Polariton Condensates
- The 3-body Coulomb problem
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- Tunable optical nonlinearity for TMD polaritons dressed by a Fermi sea
- Moiré-induced optical non-linearities: Single and multi-photon resonances
- Theory of polariton-electron interactions in semiconductor microcavities
- Nonperturbative cavity quantum electrodynamics: is the Jaynes-Cummings model still relevant?
- Enhanced scattering between electrons and exciton-polaritons in a microcavity
- Microscopic calculation of polariton scattering in semiconductor microcavities
- Quantum fluctuations in a strongly interacting Bardeen-Cooper-Schrieffer polariton condensate at thermal equilibrium
- Microscopic theory of exciton and trion polaritons in doped monolayers of transition metal dichalcogenides
- Rydberg Exciton-Polaritons in a Magnetic Field
- Bogoliubov excitations of a polariton condensate in dynamical equilibrium with an incoherent reservoir
- Perspective on real-space nanophotonic field manipulation using non-perturbative light-matter coupling
- Extremely imbalanced two-dimensional electron-hole-photon systems
- Cavity exciton-polaritons in two-dimensional semiconductors from first principles
- Polariton-polariton interaction beyond the Born approximation: A toy model study
- Intercavity polariton slows down dynamics in strongly coupled cavities
- Trion resonance in polariton-electron scattering
- Polaronic polariton quasiparticles in a dark excitonic medium
- Microscopic theory of polariton-polariton interactions
- Crescent states in charge-imbalanced polariton condensates
- Rydberg excitons and polaritons in monolayer transition metal dichalcogenides in a magnetic field
- Interplay between polarization and quantum correlations of confined polaritons
- Two-dimensional exciton-polariton interactions beyond the Born approximation
- Theoretical proposals to measure resonator-induced modifications of the electronic ground-state in doped quantum wells
- Topological Frenkel Exciton-Polaritons in One-Dimensional Lattices of Strongly Coupled Cavities
- Microscopic theory of excitons bound by light
- Quasi-equilibrium polariton condensates in the non-linear regime and beyond
- Quantum coherent states of mass-imbalanced electron-hole system within optical microcavities
- Stability of vortices in exciton-polariton condensates with spin-orbital-angular-momentum coupling
- Light-enhanced dipolar interactions between exciton polaritons