English

Acoustic non-Hermitian skin effect from twisted winding topology

Applied Physics 2021-11-11 v2

Abstract

The recently discovered non-Hermitian skin effect (NHSE) manifests the breakdown of current classification of topological phases in energy-nonconservative systems, and necessitates the introduction of non-Hermitian band topology. So far, all NHSE observations are based on one type of non-Hermitian band topology, in which the complex energy spectrum winds along a closed loop. As recently characterized along a synthetic dimension on a photonic platform, non-Hermitian band topology can exhibit almost arbitrary windings in momentum space, but their actual phenomena in real physical systems remain unclear. Here, we report the experimental realization of NHSE in a one-dimensional (1D) non-reciprocal acoustic crystal. With direct acoustic measurement, we demonstrate that a twisted winding, whose topology consists of two oppositely oriented loops in contact rather than a single loop, will dramatically change the NHSE, following previous predictions of unique features such as the bipolar localization and the Bloch point for a Bloch-wave-like extended state. This work reveals previously unnoticed features of NHSE, and provides the observation of physical phenomena originating from complex non-Hermitian winding topology.

Keywords

Cite

@article{arxiv.2104.08844,
  title  = {Acoustic non-Hermitian skin effect from twisted winding topology},
  author = {Li Zhang and Yihao Yang and Yong Ge and Yi-jun Guan and Qiaolu Chen and Qinghui Yan and Fujia Chen and Rui Xi and Yuanzhen Li and Ding Jia and Shou-qi Yuan and Hong-xiang Sun and Hongsheng Chen and Baile Zhang},
  journal= {arXiv preprint arXiv:2104.08844},
  year   = {2021}
}

Comments

14 pages, 4 figures