English

Tunable acoustic energy concentrations based on pseudo-spin locking waveguides and topological rainbow trappings

Applied Physics 2024-12-04 v1

Abstract

In this work, tunable acoustic energy concentrations are realized based on pseudo-spin locking waveguides and topological rainbow trappings. Firstly, a tunable pseudo-spin locking is proposed, and the broad acoustic energy transport and spin-locked one-way transport are verified. The results show that acoustic wave transports based on pseudo-spin locking waveguides are more robust to structure defects than conventional topological edge-state waveguides. Besides, topological rainbow trappings are realized by adjusting the distribution of liquid in tubes. Based on those, we investigate the coupling of the pseudo-spin locking waveguides and the topological rainbow trappings. The results show that high acoustic energy concentrations can be obtained conveniently by using the coupling energy concentrator based on the pseudo-spin locking waveguides and the topological rainbow trappings. The results present a novel method to concentrate acoustic wave energy, which is vital in the application field of acoustic sensings and microfludics. The according experimental verifications will be presented in the near future.

Keywords

Cite

@article{arxiv.2412.02463,
  title  = {Tunable acoustic energy concentrations based on pseudo-spin locking waveguides and topological rainbow trappings},
  author = {Bowei Wu and Teng Wang and Shuanghuizhi Li and Tingfeng Ma},
  journal= {arXiv preprint arXiv:2412.02463},
  year   = {2024}
}