Programmable Coding Acoustic Topological Insulator

Abstract: Topological acoustics has recently revolutionized fundamental concepts of acoustic propagation, giving rise to strikingly unique acoustic edge modes immune to backscattering. Despite the rapid progress in this field, simultaneous realization of reconfigurability, intelligentization, and automatic control over acoustic propagation paths is posing a great challenge. This challenge is overcome by proposing the concept of a programmable acoustic topological insulator based on two digital elements “0” or “1,” which consist of honeycomb‐lattice sonic crystals made of cylindrical rods with different diameters. The acoustic propagation paths in the topological insulators can be controlled automatically by programming different coding sequences, which arises from efficient transformation of pseudospin‐dependent edge modes on both interfaces of the digital elements. More importantly, a unique unit is experimentally fabricated that has either a “0” or “1” response automatically manipulated by an air cylinder, and design topological insulators with programmable functionality, to realize three digital acoustic devices, such as a single‐pole double‐throw switch, a single‐pole single‐throw switch, and a tunable logic gate. The proposed programmable topological insulators may enable future intelligent acoustic devices with exciting reconfigurable and programmable functionalities, which may lead to important advances in various applications, such as integrated acoustics, acoustic security, and information processing.

Standort
Deutsche Nationalbibliothek Frankfurt am Main
Umfang
Online-Ressource
Sprache
Englisch

Erschienen in
Programmable Coding Acoustic Topological Insulator ; volume:30 ; number:46 ; year:2018 ; extent:8
Advanced materials ; 30, Heft 46 (2018) (gesamt 8)

Urheber
Xia, Jian‐Ping
Jia, Ding
Sun, Hong‐Xiang
Yuan, Shou‐Qi
Ge, Yong
Si, Qiao‐Rui
Liu, Xiao‐Jun

DOI
10.1002/adma.201805002
URN
urn:nbn:de:101:1-2022091008041330692654
Rechteinformation
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Letzte Aktualisierung
15.08.2025, 07:38 MESZ

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Beteiligte

  • Xia, Jian‐Ping
  • Jia, Ding
  • Sun, Hong‐Xiang
  • Yuan, Shou‐Qi
  • Ge, Yong
  • Si, Qiao‐Rui
  • Liu, Xiao‐Jun

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