arXiv · 1803.09070
Acoustic Birefringence via Non-Eulerian Metamaterials
Abstract
The recently proposed concept of metamaterials has opened exciting venues to control wave-matter interaction in unprecedented ways. Here we demonstrate the relevance of metamaterials for inducing acoustic birefringence, a phenomenon which has already found its versatile applications in optics in designing light modulators or filters, and nonlinear optic components. This is achieved in a suitably designed acoustic metamaterial which is non-Eulerian, in the sense that at low frequencies, it cannot be homogenized to a uniform acoustic medium whose behavior is characterized by Euler equation. Thanks to the feasibility of engineering its subwavelength structure, such non-Eulerian metamaterial allows one to desirably manipulate the birefringence process. Our findings may give rise to generation of innovative devices such as tunable acoustic splitters and filters.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Farzad Zangeneh-Nejad, Romain Fleury. 2018-03-24. Acoustic Birefringence via Non-Eulerian Metamaterials. https://doi.org/10.1063/1.5090839
Cite the original work for its findings. Save a collection to share your selection of sources.