Infrared perfect absorber and its application as plasmonic sensor.
Explore this paper's citation graph
Summary
A perfect plasmonic absorber is experimentally demonstrated at lambda = 1.6 microm, its polarization-independent absorbance is 99% at normal incidence and remains very high over a wide angular range of incidence around +/-80 degrees.
- Type
- article
- Published
- 2010-06-18
- Cited by
- 2,688
- References
- 6
- OpenAlex
- https://openalex.org/W1976809055
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:5424546
Keywords
Plasmon, Polarization (electrochemistry), Absorbance, Materials science, Refractive index
References
- Aqueous systems at elevated temperatures and pressures : physical chemistry in water, steam, and hydrothermal solutions
- Optical properties of metal clusters
- Near-Field Optics: Theory, Instrumentation, and Applications
- Ultra-thin wide-angle perfect absorber for infrared frequencies
- Aqueous Systems at Elevated Temperatures and Pressures
Cited by
- Plasmonic nanosensor based on Fano resonance in waveguide-coupled resonators.
- Fano resonance resulting from a tunable interaction between molecular vibrational modes and a double continuum of a plasmonic metamolecule.
- Dual broadband near-infrared perfect absorber based on a hybrid plasmonic-photonic microstructure.
- Funneling light into subwavelength grooves in metal/dielectric multilayer films.
- Strong absorption and selective emission from engineered metals with dielectric coatings.
- Resonant circuit model for efficient metamaterial absorber.
- Strong and highly asymmetrical optical absorption in conformal metal-semiconductor-metal grating system for plasmonic hot-electron photodetection application
- Coherent control of light interaction with graphene.
- Au Nanobottles with Synthetically Tunable Overall and Opening Sizes for Chemo-Photothermal Combined Therapy.
- Fabrication and Characterization of Photonic Crystals, Optical Metamaterials and Plasmonic Devices
- Gallium Nitride Resonators for Infrared Detector Arrays and Resonant Acoustoelectric Amplifiers.
- Photothermal Effect in Plasmonic Nanostructures and its Applications
- Tinkering with Light at the Nanoscale using Plasmonic Metasurfaces and Antennas: From Fano to Function
- Structured Metallic Films for Enhanced Light Transmission and Absorption
- Refractive index sensing characteristics of dual resonances in rectangular fractal nano-apertures
- Theoretical Studies of Optical Metamaterials
- Optical Antennas for Biosensing Applications
- A fully biocompatible poly(ethylene glycol)–gold plasmonic crystal for optical sensing
- Nanotechnologies pour la bolométrie infrarouge
- Enhanced performance of VOx-based bolometer using patterned gold black absorber
Related papers
- Effect of Inorganic Salts on the Determination of Serum Alubmin by Dye-Binding Method with Absorbance Decrease
- Nondestructive Detection of Water Stress in Tomato Plants by NIR Spectroscopy
- The Linear Relationship between Concentrations and UV Absorbance of Nitrobenzene
- Plasmonics: visit the past to know the future
- Narrow-band plasmonic thermal emitter using plasmonic nanochannel structure
- THERMO-INDUCED SHIFT OF PLASMON ENERGY IN ELECTRON LOSS SPECTRA FOR THE ORDERING Pt80Co20(111) ALLOY SURFACE
- Near-field electrical detection of optical plasmons and single plasmon sources
- Brewster plasmons — The second plasmonic degree of freedom
- Plasmon Modes Management