Inverse design of reconfigurable piezoelectric topological phononic plates

Verfasst von

Xiaoying Zhuang, Chuong Nguyen, S. S. Nanthakumar, Ludovic Chamoin, Yabin Jin, Timon Rabczuk

Abstract

We present a methodology to perform inverse design of reconfigurable topological insulators for flexural waves in plate-like structures. A genetic algorithm based topology optimization method is developed and a C6v plate unit cell topology that offers twofold degeneracy in the band structure is designed. Piezoelectric patches, that are connected to an external circuit, are bonded to the substrate plate and are altered appropriately to break space inversion symmetry. The space inversion symmetry breaking opens a topological band gap mimicking quantum valley Hall effect. Numerical simulations demonstrate that the topologically protected edge state exhibits wave propagation without backscattering and is immune to disorders. The present work achieves real-time reconfigurability of the topological interfaces for waveguide applications.

Details

Organisationseinheit(en)
Institut für Photonik
Externe Organisation(en)
Tongji University
École normale supérieure Paris-Saclay (ENS Paris-Saclay)
Bauhaus-Universität Weimar
Typ
Artikel
Journal
Materials and design
Band
219
ISSN
0264-1275
Publikationsdatum
06.2022
Publikationsstatus
Veröffentlicht
Peer-reviewed
Ja
ASJC Scopus Sachgebiete
Allgemeine Materialwissenschaften, Werkstoffmechanik, Maschinenbau
Elektronische Version(en)
https://doi.org/10.1016/j.matdes.2022.110760 (Zugang: Offen )
 

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