English

Anomalous energy transport in laminates with exceptional points

Applied Physics 2019-10-03 v1 Materials Science

Abstract

Recent interest in metamaterials has led to a renewed study of wave mechanics in different branches of physics. Elastodynamics involves a special intricacy, owing to a coupling between the volumetric and shear parts of the elastic waves. Through a study of in-plane waves traversing periodic laminates, we here show that this coupling can result with unusual energy transport. We find that the corresponding frequency spectrum contains modes which simultaneously attenuate and propagate, and demonstrate that these modes coalesce to purely propagating modes at exceptional points, a property that was recently reported in parity-time symmetric systems. We show that the laminate exhibits metamaterial features near these points, such as negative refraction, and beam steering and splitting. While negative refraction in laminates has been demonstrated before by considering pure shear waves impinging an interface with multiple layers, here we realize it for coupled waves impinging a simple single-layer interface. This feature, together with the appearance of exceptional points, are absent from the model problem of anti-plane shear waves which have no volumetric part, and hence from the mathematically identical electromagnetic waves. Our work further paves the way for applications such as asymmetric mode switches, by encircling exceptional points in a tangible, purely elastic apparatus.

Keywords

Cite

@article{arxiv.1907.08853,
  title  = {Anomalous energy transport in laminates with exceptional points},
  author = {Ben Lustig and Guy Elbaz and Alan Muhafra and Gal Shmuel},
  journal= {arXiv preprint arXiv:1907.08853},
  year   = {2019}
}

Comments

35 pages, 28 figures

R2 v1 2026-06-23T10:26:02.718Z