Aluminum Nanoantenna Complexes for Strong Coupling between Excitons and Localized Surface Plasmons.
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Summary
The optical dynamics in complexes of aluminum nanoantennas coated with molecular J-aggregates are studied and it is found that they provide an excellent platform for the formation of hybrid exciton-localized surface plasmons.
- Type
- article
- Published
- 2015-08-12
- Cited by
- 108
- References
- 58
- OpenAlex
- https://openalex.org/W1177653822
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:8554675
Keywords
Exciton, Photoluminescence, Plasmon, Materials science, Surface plasmon
References
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- Coherence in Spontaneous Radiation Processes
- Room-temperature Bose-Einstein condensation of cavity exciton-polaritons in a polymer.
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- Strong coupling between chlorosomes of photosynthetic bacteria and a confined optical cavity mode
- Vivid, full-color aluminum plasmonic pixels
- Plexcitonic nanoparticles: plasmon-exciton coupling in nanoshell-J-aggregate complexes.
Cited by
- Role of material loss and mode volume of plasmonic nanocavities for strong plasmon-exciton interactions.
- Exciton-plasmon hybridization in J-aggregate-aluminum nanoantenna metasurfaces
- Silver Nanoshell Plasmonically Controlled Emission of Semiconductor Quantum Dots in the Strong Coupling Regime.
- Wafer-Scale Aluminum Nanoplasmonic Resonators with Optimized Metal Deposition
- Active Control of Plasmon–Exciton Coupling in MoS2–Ag Hybrid Nanostructures
- Active control of surface plasmon resonance in MoS2-Ag hybrid nanostructures
- Plasmon exciton-polariton lasing
- Mode Modification of Plasmonic Gap Resonances Induced by Strong Coupling with Molecular Excitons.
- Resonance Coupling in Silicon Nanosphere-J-Aggregate Heterostructures.
- Nonlinear Generation of Vector Beams From AlGaAs Nanoantennas.
- Tunable Plexcitonic Nanoparticles: A Model System for Studying Plasmon–Exciton Interaction from the Weak to the Ultrastrong Coupling Regime
- Photoswitchable Rabi Splitting in Hybrid Plasmon-Waveguide Modes.
- Ultrafast all-optical switching based on strong coupling between excitons and localized surface plasmons
- Toward Cavity Quantum Electrodynamics with Hybrid Photon Gap-Plasmon States.
- Radiative Channeling of Nanowire Frenkel Exciton Polaritons through Surface Plasmons
- Generating scattering dark states through the Fano interference between excitons and an individual silicon nanogroove
- Dispersion Control of Excitonic Thin Films for Tailored Superabsorption in the Visible Region
- Tunable band-stop filters based on the strong coupling-like phenomenon in metal–insulator–metal cavities involving molecular J-aggregates
- Strong Coupling in the Structure of Single Metallic Nanoparticle Partially Buried in Molecular J-Aggregates
- Polarization-dependent strong coupling between surface plasmon polaritons and excitons in an organic-dye-doped nanostructure.
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