Inverse design of multishape metamaterials

Open Access
Authors
Publication date 12-2024
Journal Physical Review Applied
Article number 064013
Volume | Issue number 22 | 6
Number of pages 13
Organisations
  • Faculty of Science (FNWI) - Institute of Physics (IoP) - Institute for Theoretical Physics Amsterdam (ITFA)
  • Faculty of Science (FNWI) - Institute of Physics (IoP) - Van der Waals-Zeeman Institute (WZI)
  • Faculty of Science (FNWI) - Institute of Physics (IoP)
Abstract

Multishape metamaterials exhibit more than one target shape change, e.g., the same metamaterial can have either a positive or negative Poisson's ratio. So far, multishape metamaterials have mostly been obtained by trial and error. The inverse design of multiple target deformations in such multishape metamaterials remains a largely open problem. Here, we demonstrate that it is possible to design metamaterials with multiple nonlinear deformations of arbitrary complexity. To this end, we introduce a novel sequential nonlinear method to design multiple target modes. We start by iteratively adding local constraints that match a first specific target mode; we then continue from the obtained geometry by iteratively adding local constraints that match a second target mode, and so on. We apply this sequential method to design up to five modes with complex shapes and we show that this method yields at least an 85% success rate. Yet we find that these metamaterials invariably host additional spurious modes, whose number grows with the number of target modes and their complexity, as well as the system size. Our results highlight an inherent tradeoff between design freedom and design constraints and pave the way towards multifunctional materials and devices.

Document type Article
Note Publisher Copyright: © 2024 American Physical Society.
Language English
Published at https://doi.org/10.1103/PhysRevApplied.22.064013
Other links https://www.scopus.com/pages/publications/85211078080
Downloads
PhysRevApplied.22.064013 (Final published version)
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