Vacuum Rabi splitting and strong coupling dynamics for surface plasmon polaritons and Rhodamine 6G molecules
arXiv:0902.0710 · doi:10.1103/PhysRevLett.103.053602
Abstract
We report on strong coupling between surface plasmon polaritons (SPP) and Rhodamine 6G (R6G) molecules, with double vacuum Rabi splitting energies up to 230 and 110 meV. In addition, we demonstrate the emission of all three energy branches of the strongly coupled SPP-exciton hybrid system, revealing features of system dynamics that are not visible in conventional reflectometry. Finally, in analogy to tunable-Q microcavities, we show that the Rabi splitting can be controlled by adjusting the interaction time between waveguided SPPs and R6G deposited on top of the waveguide. The interaction time can be controlled with sub-fs precision by adjusting the length of the R6G area with standard lithography methods.
4 pages, 4 figures
References in corpus (2)
Cited by in corpus (58)
- Strong coupling between surface plasmon polaritons and emitters
- Coherent coupling of molecular resonators with a micro-cavity mode
- Extraordinary exciton conductance induced by strong coupling
- Cavity-induced modifications of molecular structure in the strong coupling regime
- Coherent coupling between surface plasmons and excitons in semiconductor nanocrystals
- Lasing in dark and bright modes of a finite-sized plasmonic lattice
- Plasmon-Exciton-Polariton Lasing
- Photon scattering by a three-level emitter in a one-dimensional waveguide
- Coherent emission from a disordered organic semiconductor induced by strong coupling with surface plasmons
- Spatial Coherence Properties of Organic Molecules Coupled to Plasmonic Surface Lattice Resonances in the Weak and Strong Coupling Regimes
- Theory of the strong coupling between quantum emitters and propagating surface plasmons
- Turning a molecule into a coherent two-level quantum system
- Collective Plasmonic-Molecular Modes in the Strong Coupling Regime
- Thermalization and Cooling of Plasmon-Exciton Polaritons: Towards Quantum Condensation
- On the applicability of quantum-optical concepts in strong-coupling nanophotonics
- When polarons meet polaritons: Exciton-vibration interactions in organic molecules strongly coupled to confined light fields
- Interaction and coherence of a plasmon-exciton polariton condensate
- Cooperative coupling of ultracold atoms and surface plasmons
- Non-markovian polariton dynamics in organic strong coupling
- Polaritonic modes in a dense cloud of atoms
- Ultrafast Energy Transfer Between Molecular Assemblies and Surface Plasmons in the Strong Coupling Regime
- Tensor Network simulation of polaron-polaritons in organic microcavities
- Hybrid quantum system with nitrogen-vacancy centers in diamond coupled to surface phonon polaritons in piezomagnetic superlattices
- Polaritonic states in a dielectric nanoguide: localization and strong coupling
- Spontaneous decay of a quantum emitter near a plasmonic nanostructure
- Robustness of the Rabi splitting under nonlocal corrections in plexcitonics
- Coupling and Decoupling of Polaritonic States in Multimode Cavities
- Exciton-polariton emission from organic semiconductor optical waveguides
- Dynamics of heat transfer between nano systems
- Exciton-plasmon energy exchange drives the transition to strong coupling regime
- Anti-crossing properties of strong coupling system of silver nanoparticle dimers coated with thin dye molecular films analyzed by classical electromagnetism
- Polariton spectrum of the Dicke-Ising model
- Plasmon-induced coherence, exciton-induced transparency and Fano interference for hybrid plasmonic systems in strong coupling regime
- Theory for the stationary polariton response in the presence of vibrations
- Exciton-induced transparency in hybrid plasmonic systems
- Strong coupling of Rydberg atoms and surface phonon polaritons on piezoelectric superlattices
- Interacting quantum plasmons in metal-dielectric structures
- Manipulating the photonic Hall effect with hybrid Mie-exciton resonances
- Exciton-plasmaritons in graphene-semiconductor structures
- Fluorescence interferometry
- Polariton response in the presence of Brownian dissipation from molecular vibrations
- Unified evaluation of surface-enhanced resonance Raman scattering and fluorescence under strong coupling regime
- Strong Coupling of Collection of Emitters on Hyperbolic Meta-Material
- Non-Markovian effects for hybrid plasmonic systems in the strong coupling regime
- Description of ultrastrong light-matter interaction through coupled harmonic oscillator models and their connection with cavity-QED Hamiltonians
- Signatures of Plexcitonic States in Molecular Electroluminescence
- Plasmon-interband hybridization and anomalous production of hot electrons in aluminum nanoantennas
- Universal optical polarizability for plasmonic nanostructures
- Controlling Raman enhancement in particle-aperture hybrid nanostructures by interlayer spacing
- Polaritonic hybrid-epsilon-near-zero modes: engineering strong optoelectronic coupling and dispersion in doped cadmium oxide bilayers
- Proposal of highly efficient photoemitter with strong photon-harvesting capability and exciton superradiance
- Tunneling Current Spectra of a Metal Core/Semiconductor Shell Quantum Dot Molecule
- Microscopic quantum description of surface plasmon polaritons: Revealing intrinsic ultrastrong light-matter coupling
- What's so Hot about Electrons in Metal Nanoparticles?
- Strong coupling regime in coherent electron transport in periodic quantum nanostructures
- Space Quantization of Light Transmission by Strong Coupling of Plasmonic Cavity Modes with Photosynthetic Complexes
- Active control of surface plasmon resonance in MoS2-Ag hybrid nanostructures
- Nanopolaritons: Vacuum Rabi splitting with a single quantum dot in the center of a dimer nanoantenna