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Negative Refraction Makes a Perfect Lens

Physical Review Letters · 2000 · Vol. 85(18) · pp. 3966–3969
J. B. Pendry

Abstract

With a conventional lens sharpness of the image is always limited by the wavelength of light. An unconventional alternative to a lens, a slab of negative refractive index material, has the power to focus all Fourier components of a 2D image, even those that do not propagate in a radiative manner. Such ``superlenses'' can be realized in the microwave band with current technology. Our simulations show that a version of the lens operating at the frequency of visible light can be realized in the form of a thin slab of silver. This optical version resolves objects only a few nanometers across.

Metamaterials and Metasurfaces ApplicationsPhotonic Crystals and ApplicationsAdvanced Antenna and Metasurface TechnologiesLens (geology)OpticsSuperlensSlabRefractive indexNegative refractionWavelengthRefractionFocus (optics)Fourier transform
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References
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Journal of Physics Condensed Matter · 1998 · 1,378 citations
Composite Medium with Simultaneously Negative Permeability and Permittivity
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Extremely Low Frequency Plasmons in Metallic Mesostructures
Physical Review Letters · 1996 · 4,263 citations
Magnetism from conductors and enhanced nonlinear phenomena
IEEE Transactions on Microwave Theory and Techniques · 1999 · 8,560 citations
Plasma Losses by Fast Electrons in Thin Films
Physical Review · 1957 · 3,032 citations
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