Optimization and tunability of deep subwavelength resonators for metamaterial applications: complete enhanced transmission through a subwavelength aperture.
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Summary
The study of particle candidates for metamaterial applications, especially in terms of their electrical size and resonance strength, shows the scalability of the particles to higher frequencies and the proposition of the optimized particle for antenna, absorber, and superlens applications.
- Type
- article
- Published
- 2009-04-13
- Cited by
- 41
- References
- 43
- Access
- Open access
- OpenAlex
- https://openalex.org/W2017720181
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:28025820
Keywords
Metamaterial, Resonator, Split-ring resonator, Optics, Materials science
References
- Capacitor-loaded split ring resonators as tunable metamaterial components
- Varactor-loaded split ring resonators for tunable notch filters at microwave frequencies
- Dispersion characteristics of magneto-inductive waves: comparison between theory and experiment
- Electrically small split ring resonator antennas
- Experimental Verification of a Negative Index of Refraction
- All-metamaterial-based subwavelength cavities (λ/60) for ultrathin directive antennas
- Microstructured magnetic materials for RF flux guides in magnetic resonance imaging.
- Radiation properties of a split ring resonator and monopole composite
- Metamaterial transmission lines based on broad-side coupled spiral resonators
- Towards three-dimensional and multilayer rod-split-ring metamaterial structures by means of deep x-ray lithography
- Miniaturized negative permeability materials
- Tailoring the near-field guiding properties of magnetic metamaterials with two resonant elements per unit cell
- Effective medium theory of left-handed materials.
- Extremely low frequency plasmons in metallic mesostructures.
- Near-infrared double negative metamaterials.
- Electric coupling to the magnetic resonance of split ring resonators
- Experimental demonstration of a left-handed metamaterial operating at 100 GHz
- Low-loss magneto-inductive waveguides
- A substrate for small patch antennas providing tunable miniaturization factors
- Stop‐band and band‐pass characteristics in coplanar waveguides coupled to spiral resonators
Cited by
- Linear and circular polarized electrically small antennas based on the employment of metamaterial-inspired sub-wavelength resonators
- Transmission enhancement through deep subwavelength apertures using connected split ring resonators.
- Tunable sub-wavelength resonators based on barium-strontium-titanate thick-film technology
- Reconfigurable and Tunable Metamaterials: A Review of the Theory and Applications
- Photonic magnetic metamaterial basics
- Experimental verification of metamaterial based subwavelength microwave absorbers
- Design of a Non-Foster Actively Loaded SRR and Application in Metamaterial-Inspired Components
- Experimental verification of metamaterial loaded small patch antennas
- Radiation Properties and Coupling Analysis of a Metamaterial Based, Dual Polarization, Dual Band, Multiple Split Ring Resonator Antenna
- Dual band metamaterial antenna with loaded resonators
- Multiband Metamaterials Based on Multiple Concentric Open-Ring Resonators Topology
- Electromagnetic Materials Design for the Enhancement of the Microwave Power Transmission through Polymeric Slabs
- Detecting secondary structure and surface orientation of helical peptide monolayers from resonant hybridization signals
- Photonic metamaterial absorber designs for infrared solar cell applications
- Extreme subwavelength electric GHz metamaterials
- Extracting power from sub-wavelength apertures by using electrically small resonators: Phenomenology, modeling, and applications
- Metamaterials: Definitions, properties, applications, and FDTD‐based modeling and simulation (Invited paper)
- Theoretical Study and Experimental Realization of a Low-Loss Metamaterial Operating at the Millimeter-Wave Regime: Demonstrations of Flat- and Prism-Shaped Samples
- Hybridization of Fano and Vibrational Resonances in Surface-Enhanced Infrared Absorption Spectroscopy of Streptavidin Monolayers on Metamaterial Substrates
- Multi-band metamaterial absorber using cave-cross resonator
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