English

Topological spin-Hall edge states of flexural wave in perforated metamaterial plates

Applied Physics 2018-07-20 v3

Abstract

This paper investigates the pseudo-spin based edge states for flexural waves in a honeycomb perforated phononic plate, which behaves an elastic analogue of the quantum spin Hall effect. We utilize finite element method to analyse the dispersion for flexural waves based on Mindlin's plate theory. Topological transition takes place around a double Dirac cone at Γ\Gamma point by adjusting the sizes of perforated holes. We develop an effective Hamiltonian to describe the bands around the two doubly degenerated states and analyse the topological invariants. This further leads us to observe the topologically protected edge states localized at the interface between two lattices. We demonstrate the unidirectional propagation of the edge waves along topological interface, as well as their robustness against defects and sharp bends.

Keywords

Cite

@article{arxiv.1801.09558,
  title  = {Topological spin-Hall edge states of flexural wave in perforated metamaterial plates},
  author = {Linyun Yang and Kaiping Yu and Ying Wu and Rui Zhao and Shuaishuai Liu},
  journal= {arXiv preprint arXiv:1801.09558},
  year   = {2018}
}