AIP Advances (Sep 2017)

A programmable nonlinear acoustic metamaterial

  • Tianzhi Yang,
  • Zhi-Guang Song,
  • Eoin Clerkin,
  • Ye-Wei Zhang,
  • Jia-He Sun,
  • Yi-Shu Su,
  • Li-Qun Chen,
  • Peter Hagedorn

DOI
https://doi.org/10.1063/1.4986094
Journal volume & issue
Vol. 7, no. 9
pp. 095323 – 095323-6

Abstract

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Acoustic metamaterials with specifically designed lattices can manipulate acoustic/elastic waves in unprecedented ways. Whereas there are many studies that focus on passive linear lattice, with non-reconfigurable structures. In this letter, we present the design, theory and experimental demonstration of an active nonlinear acoustic metamaterial, the dynamic properties of which can be modified instantaneously with reversibility. By incorporating active and nonlinear elements in a single unit cell, a real-time tunability and switchability of the band gap is achieved. In addition, we demonstrate a dynamic “editing” capability for shaping transmission spectra, which can be used to create the desired band gap and resonance. This feature is impossible to achieve in passive metamaterials. These advantages demonstrate the versatility of the proposed device, paving the way toward smart acoustic devices, such as logic elements, diode and transistor.