Coherent meta-materials and the lasing spaser
arXiv:0802.2519 · doi:10.1038/nphoton.2008.82
Abstract
In 2003 Bergman and Stockman introduced the spaser, a quantum amplifier of surface plasmons by stimulated emission of radiation [1]. They argued that, by exploiting a metal/dielectric composite medium, it should be possible to construct a nano-device, where a strong coherent field is built up in a spatial region much smaller than the wavelength [1,2]. V-shaped metallic inclusion, combined with a collection of semiconductor quantum dots were discussed as a possible realization of the spaser [1]. Here we introduce a further development of the spaser concept. We show that by combining the metamaterial and spaser ideas one can create a narrow-diversion coherent source of electromagnetic radiation that is fuelled by plasmonic oscillations. We argue that two-dimensional arrays of a certain class of plasmonic resonators supporting high-Q coherent current excitations provide an intriguing opportunity to create spatially and temporally coherent laser source, the Lasing Spaser.
References in corpus (3)
Cited by in corpus (97)
- Light scattering and surface plasmons on small spherical particles
- Spaser as Nanoscale Quantum Generator and Ultrafast Amplifier
- Lasing in dark and bright modes of a finite-sized plasmonic lattice
- Overcoming losses with gain in a negative refractive index metamaterial
- Multi-fold Enhancement of Quantum Dot Luminescence in a Plasmonic Metamaterial
- Electric and magnetic dipole coupling in near-infrared split ring metamaterial arrays
- Enhanced sensing performance by the plasmonic analogue of electromagnetically induced transparency in active metamaterials
- Nonlinearly-PT-symmetric systems: spontaneous symmetry breaking and transmission resonances
- Perfect coupling of light to surface plasmons by coherent absorption
- The light-well: A tuneable free-electron light source on a chip
- Spectral collapse in ensembles of meta-molecules
- Boosting the Figure Of Merit of LSPR-based refractive index sensing by phase-sensitive measurements
- Spontaneous Emission Spectra and Quantum Light-Matter Interactions from a Strongly-Coupled Quantum Dot Metal-Nanoparticle System
- Spaser Action, Loss Compensation, and Stability in Plasmonic Systems with Gain
- Self-consistent calculation of metamaterials with gain
- Metamaterial-based gradient index lens with strong focusing in the THz frequency range
- High-quality trapped modes in all-dielectric metamaterials
- Quantum theory of spontaneous and stimulated emission of surface plasmons
- Giant nonlinearity of carbon nanotubes in a photonic metamaterial
- Effective spontaneous PT-symmetry breaking in hybridized metamaterials
- The impact of nonlocal response on metallo-dielectric multilayers and optical patch antennas
- Coherent and incoherent metamaterials and the order-disorder transitions
- Scaling of losses with size and wavelength in nanoplasmonics and metamaterials
- Arrays of Ag split-ring resonators coupled to InGaAs single-quantum-well gain
- Toy model for plasmonic metamaterial resonances coupled to two-level system gain
- Lasing in metamaterial nanostructures
- Negative Landau damping in bilayer graphene
- Many-body subradiant excitations in metamaterial arrays: Experiment and theory
- Coupled magnetic plasmons in metamaterials
- Fano-Resonant, Asymmetric, Metamaterial-Assisted Tweezers for Single Nanoparticle Trapping
- Photonic simulation of topological excitations in metamaterials
- Gain and plasmon dynamics in negative-index metamaterials
- Hybridization Induced Transparency in composites of metamaterials and atomic media
- Electric Spaser in the Extreme Quantum Limit
- Perfect absorption and giant magnification with a thin metamaterial layer
- Frequency-domain simulations of a negative-index material with embedded gain
- Giant red shift and enhancement of resonant light confinement in planar array of dielectric bars
- Extraordinary Optical Transmission Induced by Excitation of a Magnetic Plasmon Propagation Mode in a Diatomic Chain of Slit-hole Resonators
- Optical loss compensation in a bulk left-handed metamaterial by the gain in quantum dots
- Suppression of radiation loss by hybridization effect in two coupled split-ring resonators
- Channel spaser
- Ultrafast Energy Transfer Between Molecular Assemblies and Surface Plasmons in the Strong Coupling Regime
- Spaser chains
- Suppression of Anderson localization of light and Brewster anomalies in disordered superlattices containing a dispersive metamaterial
- Towards loss compensated and lasing terahertz metamaterials based on optically pumped graphene
- Dynamic Multiple Nanoparticle Trapping using Metamaterial Plasmonic Tweezers
- All-analytical semiclassical theory of spaser for plasmonic nanocavity
- Forced Synchronization of Spaser by an External Optical Wave
- Multiplexing-oriented plasmon-MoS2 hybrid metasurfaces driven by nonlinear quasi bound states in the continuum
- A combinatorial approach to metamaterials discovery
- Evanescent Gain in "Trapped Rainbow" Negative Refractive Index Heterostructures
- Optically pumped nanolaser based on two magnetic plasmon resonance modes
- Graphene nanoribbon based spaser
- Wavevector Selective Metasurfaces and Tunnel Vision Filters
- Amplification of surface plasmon polaritons in the presence of nonlinearity and spectral signatures of threshold crossover
- Control and Dynamic Competition of Bright and Dark Lasing States in Active Nanoplasmonic Metamaterials
- Superluminal plasmons with resonant gain in population inverted bilayer graphene
- Resonance amplification of left-handed transmission at optical frequencies by stimulated emission of radiation in active metamaterials
- Dispersion of guided modes in two-dimensional split ring lattices
- Resonance linewidth and inhomogeneous broadening in a metamaterial array
- Magneto-optical spaser
- Spaser and Optical Amplification Conditions in Graphene-Coated Active Wires
- Electric Switching of Fluorescence Decay in Gold-Silica-Dye Nematic Nanocolloids Mediated by Surface Plasmons
- Electrostatic theory for designing lossless negative permittivity metamaterials
- A Single-Emitter Gain Medium for Bright Coherent Radiation from a Plasmonic Nanoresonator
- Ultra-high field enhancing in Split Ring Resonators by azimuthally polarized excitation
- Enhancement of Luminescence of Quantum Emitters in the Epsilon-Near-Zero Waveguide
- Homogeneous enhancement of electric near-field in all-dielectric metasurfaces composed of cluster-based unit cells
- Topological Spaser
- Implementation of electromagnetically induced transparency in a metamaterial controlled with auxiliary waves
- The Physics of Unbounded, Broadband Absorption/Gain Efficiency in Plasmonic Nanoparticles
- Approach for describing spatial dynamics of quantum light-matter interaction in dispersive dissipative media
- Strong radiative interactions and subradiance in disordered metamaterials
- Weak value amplification using asymmetric spectral response of Fano resonance as a natural pointer
- Peculiarities of Surface Plasmons in Quantum Plasmas
- Surface plasmon polaritons in a semi-bounded degenerate plasma: role of spatial dispersion and collisions
- Coupled Magnetic Resonator Optical Waveguides - mimicking spin waves in coupled metamaterials
- Hybridization effect in coupled metamaterials
- Electromagnetic wave diffraction by periodic planar metamaterials with nonlinear constituents
- Gain-assisted critical coupling for enhanced optical absorption in graphene
- Double Resonance Nanolaser based on Coupled Slit-hole Resonator Structures
- Lasing oscillation condition and group delay control in gain-assisted plasmon-induced transparency
- Dispersion and damping of potential surface waves in a degenerate plasma
- Signature of strong atom-cavity interaction on critical coupling
- Sub-wavelength localization of near-fields in coupled metallic spheres for single emitter polarization analysis
- Parametric metasurfaces for electromagnetic wave amplification
- Mueller matrix spectroscopy of Fano resonance in Plasmonic Oligomers
- Controlling Fano resonance using the Geometrical Phase of light in spatially tailored waveguided plasmonic crystals
- Hysteresis assisted narrowband resonances in a chain of nonlinear plasmonic arrays
- A new type of surface waves in a fully degenerate quantum plasma
- Realizing negative index of refraction in an ensemble of ground-state polar molecules with lasers
- Lasing condition for trapped modes in subwavelength--wired PT--symmetric resonators
- Multilevel Laser Induced Continuum Structure
- Gain-loss-engineering: a new platform for extreme anisotropic thermal photon tunneling
- Planar Chirality of Plasmonic Multi-Split Rings
- Resonant plane waves in metamaterials with dipoles and quadrupoles coupled with quantum system
- Plasmonics of non-noble metals