Cooperative emission of light by an ensemble of dipoles near a metal nanostucture: The plasmonic Dicke effect
arXiv:0805.1072 · doi:10.1103/PhysRevLett.102.077401
Abstract
We identify a new mechanism for cooperative emission of light by an ensemble of N dipoles near a metal nanostructure supporting a surface plasmon.The cross-talk between emitters due to virtual plasmon exchange leads to a formation of three plasmonic super-radiant modes whose radiative decay rates scales with N, while the total radiated energy is thrice that of a single emitter. Our numerical simulations indicate that the plasmonic Dicke effect survives non-radiative losses in the metal.
4 pages, 4 figures
References in corpus (2)
Cited by in corpus (50)
- Quantum Plasmonics
- Light interaction with photonic and plasmonic resonances
- Coherent emission from a disordered organic semiconductor induced by strong coupling with surface plasmons
- Collective Plasmonic-Molecular Modes in the Strong Coupling Regime
- Plasmon-mediated superradiance near metal nanostructures
- Theory of plasmon-enhanced metal photoluminescence
- Resonance energy transfer near metal nanostructures mediated by surface plasmons
- Topical Review: optics of exciton-plasmon nanomaterials
- Local density of states for nanoplasmonics
- Superradiance of a 2D-spaser array
- Superradiance, subradiance, and suppressed superradiance of dipoles near a metal interface
- Signatures of quantized coupling between quantum emitters and localized surface plasmons
- Collective effects in Casimir-Polder forces
- Controlling collective spontaneous emission with plasmonic waveguides
- Modified dipole-dipole interaction and dissipation in an atomic ensemble near surfaces
- Coupling Quantum Emitters in WSe2 Monolayers to a Metal-Insulator-Metal Waveguide
- Coulomb and quenching effects in small nanoparticle-based spasers
- Two-photon-interaction effects in the bad-cavity limit
- Cooperative emission in quantum plasmonic superradiance
- Collective scattering in hybrid nanostructures with many atomic oscillators coupled to an electromagnetic resonance
- Cooperative energy transfer controls the spontaneous emission rate beyond field enhancement limits
- Energy transfer and interference by collective electromagnetic coupling
- Cooperative amplification of energy transfer in plasmonic systems
- Controlling photon bunching and antibunching of two quantum emitters near a core-shell sphere
- Spaser quenching by off-resonant plasmon modes
- Real and imaginary energy gaps: a comparison between single excitation Superradiance and Superconductivity and robustness to disorder
- Multi-qubit quantum phase gates based on surface plasmons of a nanosphere
- Superradiance of non-Dicke states
- Interaction-free evolving states of a bipartite system
- Purcell effect with extended sources: The role of the cross density of states
- Cooperative emission mediated by cooperative energy transfer to a plasmonic antenna
- Superradiant diamond color center arrays coupled to concave plasmonic nanoresonators
- Dicke Phase Transition in a Disordered Emitter-Graphene Plasmon System
- Quantum coherence of light emitted by two single-photon sources in a structured environment
- Quantum symmetry breaking of exciton/polaritons in metal-nanorod plasmonic array
- Superradiance of a subwavelength array of independent classical nonlinear emitters
- Collective eigenstates of emission in an N-entity heterostructure and the evaluation of its Green tensors and self-energy components
- Strong Superradiance of Coherently Coupled Magnetic Dipole Emitters Mediated by Whispering Gallery Modes of a Subwavelength All-Dielectric Cavity
- Numerical Simulations Unveil Superradiant Coherence in a Lattice of Charged Quantum Oscillators
- Universal optical polarizability for plasmonic nanostructures
- Plasmonic Superradiance of Two Emitters Near Metal Nanorod
- Spectral Analysis of Proton Eigenfunctions in Crystalline Environments
- Area theorem for surface plasmons interacting with resonant atoms
- Plasmon spectrum and plasmon-mediated energy transfer in a multi-connected geometry
- Radiation-Induced Correlation between Molecules Nearby Metallic Antenna Array
- Efficient single-emitter plasmonic patch antenna fabrication by novel deterministic in situ optical lithography using spatially modulated light
- Cooperative spontaneous emission in nonuniform media
- Two-photon up-conversion affected by inter-molecule correlations near metallic nanostructure
- Excited states of coherent harmonic qubits with long-range photon coupling and dissipation
- Optomechanical Collective Effects in Surface-Enhanced Raman Scattering from Many Molecules