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Composite Medium with Simultaneously Negative Permeability and Permittivity
Physical Review Letters · 2000 · Vol. 84(18) · pp. 4184–4187
David R. Smith✉(University of California, San Diego)Willie J. Padilla(University of California, San Diego)D. C. Vier(University of California, San Diego)Sia Nemat‐Nasser(University of California, San Diego)S. Schultz(University of California, San Diego)
Abstract
We demonstrate a composite medium, based on a periodic array of interspaced conducting nonmagnetic split ring resonators and continuous wires, that exhibits a frequency region in the microwave regime with simultaneously negative values of effective permeability &mgr;(eff)(omega) and permittivity varepsilon(eff)(omega). This structure forms a "left-handed" medium, for which it has been predicted that such phenomena as the Doppler effect, Cherenkov radiation, and even Snell's law are inverted. It is now possible through microwave experiments to test for these effects using this new metamaterial.
Metamaterials and Metasurfaces ApplicationsAdvanced Antenna and Metasurface TechnologiesPhotonic Crystals and ApplicationsPermittivityMetamaterialMicrowaveComposite numberPermeability (electromagnetism)Cherenkov radiationPhysicsResonatorSplit-ring resonatorOptics
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References
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Journal of Physics Condensed Matter · 1998 · 1,378 citations
Extremely Low Frequency Plasmons in Metallic Mesostructures
Physical Review Letters · 1996 · 4,263 citations
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