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Active control on topological interface states of elastic wave metamaterials with double coupled chains. | LitMetric

AI Article Synopsis

  • Topological elastic wave metamaterials excel in controlling wave propagation and localizing modes, but altering their topological properties has been challenging due to structural constraints.
  • This study introduces a new type of metamaterial with double coupled chains and active control, allowing for dynamic adjustments to achieve band inversion and topological interface modes through negative capacitance circuits.
  • The research includes finite element simulations and experiments, which validate the theoretical predictions and aim to enhance the design and application of these advanced metamaterials.

Article Abstract

Topological elastic wave metamaterials have shown significant advantages in manipulating wave propagation and realizing localized modes. However, topological properties of most mechanical metamaterials are difficult to change because of structural limitations. This work proposes the elastic wave metamaterials with double coupled chains and active control, in which band inversion and topological interface modes can be achieved by flexibly tuning negative capacitance circuits. Finite element simulations and experiments are performed to demonstrate the topological interface modes, which show good agreements with the theoretical results. This research seeks to provide effective strategies for the design and application of topological elastic wave metamaterials.

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Source
http://dx.doi.org/10.1121/10.0021877DOI Listing

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