\begin{document}$ \theta = \pm 33^\circ $\end{document}, a double Dirac cone appears at the center Γ point of the Brillouin zone without requiring the lattices to fold, and a band inversion occurs on both sides of \begin{document}$ \pm 33^\circ $\end{document} which can be characterized as a topological phase transition. The elastic band gap and two kinds of pseudospin states with clockwise or counterclockwise circulating mechanical energy flux patterns in the band structure are found by calculating the projected band structures of a supercell which is composed of phononic crystals with different topological phases. Based on this finding, different constructions of phononic waveguide are used for implementing the numerical analysis to demonstrate the back-scattering immunity of the edge states when disorder, tortuosity and cavity are introduced into the waveguide. Unidirectional robust propagation and multichannel waveguide switch due to the pseudospin-dependent one-way edge modes are also validated with numerical models. The phononic crystal plate presented in this paper provides a simple realizable method of designing the topologically protected elastic edge states. "> - 必威体育下载

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Zheng Zhou-Fu, Yin Jian-Fei, Wen Ji-Hong, Yu Dian-Long
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  • Abstract views:9437
  • PDF Downloads:324
  • Cited By:0
Publishing process
  • Received Date:13 April 2020
  • Accepted Date:05 May 2020
  • Available Online:12 May 2020
  • Published Online:05 August 2020

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