Controlled reflectance surfaces with film-coupled colloidal nanoantennas
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Summary
It is shown that the film-coupled nanocubes provide a reflectance spectrum that can be tailored by varying the geometry (the size of the cubes and/or the thickness of the spacer) and can be controlled at scales out of reach of lithographic approaches that are otherwise required to manipulate matter on the nanoscale.
- Type
- article
- Published
- 2012-12-05
- Cited by
- 696
- References
- 33
- Access
- Open access
- OpenAlex
- https://openalex.org/W2005173952
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4389578
Keywords
Thermophotovoltaic, Materials science, Metamaterial, Emissivity, Optoelectronics
References
- Molecular structure of cysteamine monolayers on silver and gold substrates: Comparative studies by surface-enhanced Raman scattering
- Enhanced transmission of slit arrays in an extremely thin metallic film
- Distance-Dependent Plasmon Resonant Coupling between a Gold Nanoparticle and Gold Film
- Palladium-based plasmonic perfect absorber in the visible wavelength range and its application to hydrogen sensing.
- Infrared perfect absorber and its application as plasmonic sensor.
- Shape-Controlled Synthesis of Gold and Silver Nanoparticles
- Large-area, wide-angle, spectrally selective plasmonic absorber
- Separation of nanoparticles by gel electrophoresis according to size and shape.
- Design and global optimization of high-efficiency thermophotovoltaic systems.
- Metamaterial metal-based bolometers
- Plasmonic detection of a model analyte in serum by a gold nanorod sensor.
- Generalized laws of reflection and refraction from real valued boundary conditions
- Parametric formulation of the Fourier modal method for crossed surface-relief gratings
- Time-Reversed Lasing and Interferometric Control of Absorption
- Complex Chemical Force Titration Behavior of Amine-Terminated Self-Assembled Monolayers
- Why metallic surfaces with grooves a few nanometers deep and wide may strongly absorb visible light.
- Cut-wire pairs and plate pairs as magnetic atoms for optical metamaterials.
- Taming the blackbody with infrared metamaterials as selective thermal emitters.
- High performance optical absorber based on a plasmonic metamaterial
- Metamaterials controlled with light.
Cited by
- Electrically driven optical metamaterials
- Photothermal Effect in Plasmonic Nanostructures and its Applications
- Strong Coupling between Plasmonic Gap Modes and Photonic Lattice Modes in DNA-Assembled Gold Nanocube Arrays.
- Effects of three-layered nanodisk size on cell detection sensitivity of plasmon resonance biosensors.
- Engineering optical properties of metal/porous anodic alumina films for refractometric sensing
- Metamaterial Absorbers for Infrared Detection of Molecular Self-Assembled Monolayers
- Fluorescence Enhancement of Nanoraspberry Hot-spot Source Composed of Gold Nanoparticles and Aniline Oligomers
- Photonic and plasmonic nanoresonators: a modal approach
- Clarifying the origin of third-harmonic generation from film-coupled nanostripes.
- Quantum corrections in the optical properties of three-dimensional plasmonic metamaterials with subnanometer gaps
- Subwavelength sensing elements from film-coupled silver nanocubes
- Visible-light photocatalysis using plasmonic coupling effect for optofluidic microreactors
- Plasmonic nanostructures for physical and biological applications
- Plasmonic and metamaterial structures as electromagnetic absorbers
- Ultrabroadband strong light absorption based on thin multilayered metamaterials
- A facile high‐performance SERS substrate based on broadband near‐perfect optical absorption
- Near-infrared light absorption and scattering based on a mono-layer of gold nanoparticles
- Ultrathin Semiconductor Perfect Light Absorbers with High Spectral, Polarization, and Angle Selectivity for Arbitrary Wavelengths
- Plasmonic local heating beyond diffraction limit by the excitation of magnetic polariton
- Design of optical metamaterial mirror with metallic nanoparticles for floating-gate graphene optoelectronic devices.
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