Single-molecule strong coupling at room temperature in plasmonic nanocavities
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Summary
Statistical analysis of vibrational spectroscopy time series and dark-field scattering spectra provides evidence of single-molecule strong coupling, opening up the exploration of complex natural processes such as photosynthesis and the possibility of manipulating chemical bonds.
- Type
- article
- Published
- 2016-06-13
- Cited by
- 1,753
- References
- 34
- Access
- Open access
- OpenAlex
- https://openalex.org/W2418622137
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4459274
Keywords
Plasmon, Coupling (piping), Photon, Common emitter, Molecule
References
- Vacuum Rabi splitting with a single quantum dot in a photonic crystal nanocavity
- Coherent coupling of molecular resonators with a microcavity mode
- Cavity-induced modifications of molecular structure in the strong coupling regime
- Extraordinary exciton conductance induced by strong coupling.
- Unfolding the contents of sub-nm plasmonic gaps using normalising plasmon resonance spectroscopy.
- Approaching the strong coupling limit in single plasmonic nanorods interacting with J-aggregates
- Probing the mechanisms of large Purcell enhancement in plasmonic nanoantennas
- Strong coupling between distant photonic nanocavities and its dynamic control
- Large single-molecule fluorescence enhancements produced by a bowtie nanoantenna
- Nanooptics of Molecular-Shunted Plasmonic Nanojunctions
- Strong coupling between chlorosomes of photosynthetic bacteria and a confined optical cavity mode
- Enhancement and quenching of single-molecule fluorescence.
- Control of plasmon emission and dynamics at the transition from classical to quantum coupling.
- Probing the Ultimate Limits of Plasmonic Enhancement
- Nanophotonics: Shrinking light-based technology
- Coupling a Single Trapped Atom to a Nanoscale Optical Cavity
- Self-aggregation of Methylene Blue in aqueous medium and aqueous solutions of Bu4NBr and urea
- Vacuum Rabi splitting in semiconductors
- Strong light–matter coupling in two-dimensional atomic crystals
- Quantitative multiplexing with nano-self-assemblies in SERS
Cited by
- Plasmon-Exciton Coupling Using DNA Templates.
- Role of material loss and mode volume of plasmonic nanocavities for strong plasmon-exciton interactions.
- Plasmonic sphere-on-plane systems with semiconducting polymer spacer layers.
- Relevance of the Quadratic Diamagnetic and Self-Polarization Terms in Cavity Quantum Electrodynamics
- Single-plasmon blockade from nanostructured metallic dimers
- Suppressing photochemical reactions with quantized light fields
- Lasing in dark and bright modes of a finite-sized plasmonic lattice
- Plasmon-controlled excitonic emission from vertically-tapered organic nanowires.
- Mode Modification of Plasmonic Gap Resonances Induced by Strong Coupling with Molecular Excitons.
- Molecular fluorescence enhancement in plasmonic environments: exploring the role of nonlocal effects.
- Quantum emitter dipole-dipole interactions in nanoplasmonic systems
- Strong plasmonic enhancement of biexciton emission: controlled coupling of a single quantum dot to a gold nanocone antenna
- Quantum State Absorptions Coupled To Resonance Raman Spectroscopy Could Result In A General Explanation of TERS From Multiprobe NSOM & Raman Scattering
- Atoms and molecules in cavities, from weak to strong coupling in quantum-electrodynamics (QED) chemistry
- Strong light-matter interactions in plasmonic lattices
- Light-Directed Reversible Assembly of Plasmonic Nanoparticles Using Plasmon-Enhanced Thermophoresis.
- Plasmonic Crystals for Strong Light–Matter Coupling in Carbon Nanotubes
- Hybridised exciton–polariton resonances in core–shell nanoparticles
- Shaping polaritons to reshape selection rules
- Material Platforms for Integrated Quantum Photonics
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