Sub-wavelength imaging is possible if metamaterial lenses realizing hyperbolic or elliptic Equi-Frequency Contours (EFCs) are used. Theoretically, lenses exhibiting hyperbolic EFCs allow imaging with unlimited resolution, but only metamaterials of elliptic EFCs producing limited resolution have been so far realized in elastic field. Thus, an elastic metamaterial lens realizing truly hyperbolic EFCs can lead to superior-resolution ultrasonic imaging. This Letter presents the realization of an elastic lens exhibiting truly hyperbolic EFCs and its experimental verification. (C) 2014 AIP Publishing LLCclos
© 2020, The Author(s). Despite that Hyperbolic Metamaterial (HMM) has demonstrated sub-wavelength fo...
Through recent advances on metamaterials, new wave devices, called hyperlenses, have been developed....
International audienceMetasurfaces are planar metamaterials with a flat surface and a subwavelength ...
Subwavelength imaging by metamaterials and extended work to pursue total transmission has been succe...
Subwavelength imaging by metamaterials and extended work to pursue total transmission has been succe...
Abstract Hyperbolic metamaterials, the highly anisotropic subwavelength media, immensely widen the e...
Metamaterials, artificially structured nanomaterials, have enabled unprecedented and extraordinary p...
We demonstrate that achieving the far-field super-resolution imaging can be realized by using a plan...
Hyperbolic metamaterials in which waves can only propagate through the radial direction have achieve...
An acoustic hyperlens that is able to magnify and image objects much smaller than the probing wavele...
Metamaterials are composed of arrays of subwavelength-sized artificial structures; these architectur...
In recent years, various types of acoustic metamaterials have been proposed with capabilities for ov...
The explosion of interest in metamaterials is due to the dramatically increased manipulation abilit...
We investigate numerically and experimentally highly efficient acoustic lenses based on the principl...
Anisotropic zero-mass acoustic metamaterials are able to transmit evanescent waves without decaying ...
© 2020, The Author(s). Despite that Hyperbolic Metamaterial (HMM) has demonstrated sub-wavelength fo...
Through recent advances on metamaterials, new wave devices, called hyperlenses, have been developed....
International audienceMetasurfaces are planar metamaterials with a flat surface and a subwavelength ...
Subwavelength imaging by metamaterials and extended work to pursue total transmission has been succe...
Subwavelength imaging by metamaterials and extended work to pursue total transmission has been succe...
Abstract Hyperbolic metamaterials, the highly anisotropic subwavelength media, immensely widen the e...
Metamaterials, artificially structured nanomaterials, have enabled unprecedented and extraordinary p...
We demonstrate that achieving the far-field super-resolution imaging can be realized by using a plan...
Hyperbolic metamaterials in which waves can only propagate through the radial direction have achieve...
An acoustic hyperlens that is able to magnify and image objects much smaller than the probing wavele...
Metamaterials are composed of arrays of subwavelength-sized artificial structures; these architectur...
In recent years, various types of acoustic metamaterials have been proposed with capabilities for ov...
The explosion of interest in metamaterials is due to the dramatically increased manipulation abilit...
We investigate numerically and experimentally highly efficient acoustic lenses based on the principl...
Anisotropic zero-mass acoustic metamaterials are able to transmit evanescent waves without decaying ...
© 2020, The Author(s). Despite that Hyperbolic Metamaterial (HMM) has demonstrated sub-wavelength fo...
Through recent advances on metamaterials, new wave devices, called hyperlenses, have been developed....
International audienceMetasurfaces are planar metamaterials with a flat surface and a subwavelength ...