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Pathway towards programmable wave anisotropy in cellular metamaterials

2018/02/14 by Paolo Celli, Weiting Zhang, Stefano Gonella · 1 citation
Physics and Astronomy · #physics.app-ph #cond-mat.mtrl-sci

paper · pdf · doi:10.1103/physrevapplied.9.014014

published as Phys. Rev. Appl. 9(1), 014014 (2018)

arxiv created 2018/02/14 · arxiv updated 2018/02/15

Abstract

In this work, we provide a proof-of-concept experimental demonstration of the wave control capabilities of cellular metamaterials endowed with populations of tunable electromechanical resonators. Each independently tunable resonator comprises a piezoelectric patch and a resistor-inductor shunt, and its resonant frequency can be seamlessly re-programmed without interfering with the cellular structure's default properties. We show that, by strategically placing the resonators in the lattice domain and by deliberately activating only selected subsets of them, chosen to conform to the directional features of the beamed wave response, it is possible to override the inherent wave anisotropy of the cellular medium. The outcome is the establishment of tunable spatial patterns of energy distillation resulting in a non-symmetric correction of the wavefields.

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