Theoretical Study and Experimental Realization of a Low-Loss Metamaterial Operating at the Millimeter-Wave Regime: Demonstrations of Flat- and Prism-Shaped Samples
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- Type
- article
- Published
- 2010-01-01
- Cited by
- 20
- References
- 53
- Access
- Open access
- OpenAlex
- https://openalex.org/W2115720250
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:27154336
Keywords
Metamaterial, Optics, Metamaterial antenna, Physics, Horn antenna
References
- Optimization and tunability of deep subwavelength resonators for metamaterial applications: complete enhanced transmission through a subwavelength aperture.
- Effect of disorder on magnetic resonance band gap of split-ring resonator structures.
- Electromagnetic parameter retrieval from inhomogeneous metamaterials.
- Physical configuration and performance modeling of all-dielectric metamaterials
- Magnetotunable left-handed material consisting of yttrium iron garnet slab and metallic wires
- Highly directive radiation from sources embedded inside photonic crystals
- Electrically small split ring resonator antennas
- Experimental Verification of a Negative Index of Refraction
- Experimental observation of left-handed behavior in an array of standard dielectric resonators.
- Negative refraction in ferromagnet-superconductor superlattices.
- All-metamaterial-based subwavelength cavities (λ/60) for ultrathin directive antennas
- Enhanced transmission of microwave radiation in one-dimensional metallic gratings with subwavelength aperture
- Controlling Electromagnetic Fields
- Microstructured magnetic materials for RF flux guides in magnetic resonance imaging.
- Radiation properties of a split ring resonator and monopole composite
- Negative magnetic permeability in the visible light region.
- Towards three-dimensional and multilayer rod-split-ring metamaterial structures by means of deep x-ray lithography
- Extraordinary grating-coupled microwave transmission through a subwavelength annular aperture.
- Saturation of the magnetic response of split-ring resonators at optical frequencies.
- Robust method to retrieve the constitutive effective parameters of metamaterials.
Cited by
- Photonic magnetic metamaterial basics
- Experimental verification of metamaterial based subwavelength microwave absorbers
- Diamond-shaped hole array in double-layer metal sheets for negative index of refraction
- Radiation Properties and Coupling Analysis of a Metamaterial Based, Dual Polarization, Dual Band, Multiple Split Ring Resonator Antenna
- DUAL-BAND POLARIZATION INDEPENDENT META- MATERIAL ABSORBER BASED ON OMEGA RESOANA- TOR AND OCTA-STARSTRIP CONFIGURATION
- Multiband Metamaterials Based on Multiple Concentric Open-Ring Resonators Topology
- Horn antennas loaded with metamaterial for Ku band application
- Photonic metamaterial absorber designs for infrared solar cell applications
- Microwave response of octagon-shaped parallel plates: Low-loss metamaterial
- A Negative Refractive Index Metamaterial Based on a Cubic Array of Layered Nonmagnetic Spherical Particles
- Metamaterial inspired enhanced far‐field transmission through a subwavelength nano‐hole
- The I shape antenna loaded with ZOR for WLAN and WiMax application
- CPW-Fed antenna based on Metamaterial for Broadband application
- Dual-band high-frequency metamaterial absorber based on patch resonator for solar cell applications and its enhancement with graphene layers
- Millimeter-wave scale metamaterials
- An investigation on cross-shaped fishnet metamaterial for W-band radar application
- A Low Loss Broadband Metamaterial Based High Gain W-band Flat Lens Antenna for Radar Application
- Horn Antennas Loaded with Metamaterial for Satellite band Application
- DUAL-BAND POLARIZATION INDEPENDENT META- MATERIAL ABSORBER BASED ON OMEGA RESOANA- TOR AND OCTA-STARSTRIP CONFIGURATION
- Electrically Small Planar Antennas Based on Metamaterial
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