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Published on: August 30, 2012
Holey-structured tungsten metamaterials for broadband ultrasonic sub-wavelength imaging in water
Lorenzo Astolfi1, David A Hutchins1, Peter J Thomas1
1School of Engineering, University of Warwick, Coventry CV4 7AL, United Kingdom.
Abstract:
Metamaterials exhibiting Fabry-Pérot resonances are shown to achieve ultrasonic imaging of a sub-wavelength aperture in water immersion across a broad bandwidth. Holey-structured metamaterials of different thickness were additively manufactured using a tungsten substrate and selective laser melting, tungsten being chosen so as to create a significant acoustic impedance mismatch with water. Both broadband metamaterial behavior and sub-wavelength imaging in water are demonstrated experimentally and validated with finite element simulations over the 200-300 kHz range.

