Negative Refraction Makes a Perfect Lens

Отрицательная рефракция создает идеальную линзу
J. B. Pendry
2000-10-30

evanescent wave focusingnegative refractive indexsubwavelength imagingsuperlensthin silver slab
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.
1
A slab of negative refractive index material can focus all Fourier components of a 2D image, including non-propagating (evanescent) components.
2
Simulations indicate a thin slab of silver can operate as an optical-version superlens at visible frequencies.
3
Such negative-index "superlenses" can be realized in the microwave band with current technology.
4
The proposed optical silver slab superlens can resolve objects only a few nanometers across, surpassing conventional wavelength-limited resolution.

Thin slab of negative-refractive-index material (optical superlens realized as a thin slab of silver)

Focusing/resolution performance enabling perfect imaging by recovering all Fourier components including evanescent (non-propagating) waves to achieve subwavelength (nanometer-scale) resolution

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2000-10-30
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J. B. Pendry
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