Interaction and coherence of a plasmon-exciton polariton condensate
arXiv:1709.04803 · doi:10.1021/acsphotonics.8b00662
Abstract
Polaritons are quasiparticles arising from the strong coupling of electromagnetic waves in cavities and dipolar oscillations in a material medium. In this framework, localized surface plasmon in metallic nanoparticles defining optical nanocavities have attracted increasing interests in the last decade. This interest results from their sub-diffraction mode volume, which offers access to extremely high photonic densities by exploiting strong scattering cross-sections. However, high absorption losses in metals have hindered the observation of collective coherent phenomena, such as condensation. In this work we demonstrate the formation of a non-equilibrium room temperature plasmon-exciton-polariton condensate with a long range spatial coherence, extending a hundred of microns, well over the excitation area, by coupling Frenkel excitons in organic molecules to a multipolar mode in a lattice of plasmonic nanoparticles. Time-resolved experiments evidence the picosecond dynamics of the condensate and a sizeable blueshift, thus measuring for the first time the effect of polariton interactions in plasmonic cavities. Our results pave the way to the observation of room temperature superfluidity and novel nonlinear phenomena in plasmonic systems, challenging the common belief that absorption losses in metals prevent the realization of macroscopic quantum states.
23 pages, 5 figures, SI 7 pages, 5 figures
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- Room Temperature Exciton-Polariton Condensation in Silicon Metasurfaces Emerging from Bound States in the Continuum
- Observation of Quantum metric and non-Hermitian Berry curvature in a plasmonic lattice
- Dipolar and Quadrupolar Excitons Coupled to a Nanoparticle-on-a-Mirror Cavity
- Spatial and Temporal Coherence in Strongly Coupled Plasmonic Bose-Einstein Condensates
- Strong coupling between organic dye molecules and lattice modes of a dielectric nanoparticle array
- Multi-mode lasing in supercell plasmonic nanoparticle arrays
- Crossover from exciton-polariton condensation to photon lasing in an optical trap
- Pseudospin-orbit coupling and non-Hermitian effects in the Quantum Geometric Tensor of a plasmonic lattice
- Polarization and phase textures in lattice plasmon condensates
- Near-field Analysis of Strong Coupling between Localized Surface Plasmons and Excitons
- Topological Frenkel Exciton-Polaritons in One-Dimensional Lattices of Strongly Coupled Cavities
- Many-Body Entanglement in Solid-State Emitters
- Topological invariants and topological charges in photonic systems
- Degenerate parametric down-conversion facilitated by exciton-plasmon polariton states in nonlinear plasmonic cavity
- Theory of dynamical superradiance in organic materials