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Updated: Apr 26, 2026

Characterizing Dissipative Elastic Metamaterials Produced by Additive Manufacturing
Published on: June 28, 2024
Sub-wavelength energy trapping of elastic waves in a metamaterial
Andrea Colombi1, Philippe Roux1, Matthieu Rupin1
1ISTerre, Université Joseph Fourier, Grenoble, BP 53 38041, Grenoble CEDEX 9, France andree.colombi@gmail.com, philippe.roux@ujf-grenoble.fr, matthieu.rupin@ujf-grenoble.fr.
Abstract:
Deep sub-wavelength focusing has been demonstrated for locally resonant metamaterials using electromagnetic and acoustic waves. The elastic equivalents of such objects are made of sub-wavelength resonating beams fixed to a two-dimensional plate, as presented here. Independent of a random or regular arrangement of the resonators, the metamaterial shows large bandgaps that are independent of the incident wave direction. Numerical simulations demonstrate that the insertion of a defect in the layout, as a shorter resonator, creates strong amplification of the wave-field on the defect. This energy trapping, which is localized on a spatial scale that is much smaller than the wavelength in the two-dimensional plate, leads to a >1 factor in terms of the local density of energy.
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