Theory of the spontaneous optical emission of nanosize photonic and plasmon resonators.
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Summary
A self-consistent electromagnetic theory of the coupling between dipole emitters and dissipative nanoresonators that predicts that a spectral detuning between the emitter and the resonance does not necessarily result in a Lorentzian response in the presence of dissipation.
- Type
- article
- Published
- 2013-06-05
- Cited by
- 620
- References
- 38
- Access
- Open access
- OpenAlex
- https://openalex.org/W2075381039
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:20489550
Keywords
Physics, Plasmon, Resonator, Photonics, Dissipation
References
- Thresholdless nanoscale coaxial lasers
- Small Antenna Design
- Generalized effective mode volume for leaky optical cavities.
- Gold nanorods and nanospheroids for enhancing spontaneous emission
- Enhancement of single-molecule fluorescence using a gold nanoparticle as an optical nanoantenna.
- Antennas for light
- Effective Mode Volume of Nanoscale Plasmon Cavities
- Demonstration of a spaser-based nanolaser
- Enhanced single-photon emission from a diamond–silver aperture
- Photon confinement in photonic crystal nanocavities
- Optical antennas as nanoscale resonators.
- Use of grating theories in integrated optics.
- Resonance quality, radiative/ohmic losses and modal volume of Mie plasmons
- Self-consistent calculations of loss-compensated fishnet metamaterials
- Metal-coated nanocylinder cavity for broadband nonclassical light emission.
- Modes of random lasers
- Effective wavelength scaling for optical antennas.
- Three-dimensional analysis of cylindrical microresonators based on the aperiodic Fourier modal method.
- Optical Processes in Microcavities
- Resonant Optical Antennas
Cited by
- Role of material loss and mode volume of plasmonic nanocavities for strong plasmon-exciton interactions.
- Eigen-energy effects and non-orthogonality in the quasi-normal mode expansion of Maxwell equations.
- Optical antennas driven by quantum tunneling: a key issues review
- Plasmonic cavities and optical nanosources
- Contrôle de la fluorescence par des nanoantennes plasmoniques
- Nanoantennas for ultrabright single photon sources.
- Efficient single photon emission and collection based on excitation of gap surface plasmons.
- Emission, scattering and localization of light in complex structures: From nanoantennas to disordered media
- Photonic and plasmonic nanoresonators: a modal approach
- An antenna model for the Purcell effect
- Modified spontaneous emission in nanophotonic structures
- Tens of thousands‐fold upconversion luminescence enhancement induced by a single gold nanorod
- Unbounded spatial spectrum of propagating waves in a polaritonic wire medium
- Resonant state expansion applied to open optical systems
- Fundamental limits to optical response in absorptive systems.
- A centimeter-scale sub-10 nm gap plasmonic nanorod array film as a versatile platform for enhancing light-matter interactions.
- A Large‐Scale Flexible Plasmonic Nanorod Array with Multifunction of Strong Photoluminescence Emission and Radiation Enhancement
- Resonant-state-expansion Born approximation with a correct eigen-mode normalisation
- Hidden modes in open disordered media: analytical, numerical, and experimental results
- Single-plasmon blockade from nanostructured metallic dimers
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