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Acoustic metamaterial for subwavelength edge detection

2015/01/10 by Miguel Molerón, Chiara Daraio
Computer Science · Earth and Planetary Sciences · Engineering · Physics and Astronomy · #Acoustic Wave Phenomena Research #Acoustics #Computer science #Enhanced Data Rates for GSM Evolution #Evanescent wave #Field (mathematics) #Metamaterial #Optics #Physics #Process (computing) #Speech and Audio Processing #Telecommunications #Underwater Acoustics Research #Wavelength #physics.optics

paper · pdf · doi:10.1038/ncomms9037

arxiv created 2015/01/10 · openalex publication_date 2015/08/25 · arxiv updated 2016/02/01 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/05

Abstract

Metamaterials have demonstrated the possibility to produce super-resolved images by restoring propagative and evanescent waves. However, for efficient information transfer, for example, in compressed sensing, it is often desirable to visualize only the fast spatial variations of the wave field (carried by evanescent waves), as the one created by edges or small details. Image processing edge detection algorithms perform such operation, but they add time and complexity to the imaging process. Here we present an acoustic metamaterial that transmits only components of the acoustic field that are approximately equal to or smaller than the operating wavelength. The metamaterial converts evanescent waves into propagative waves exciting trapped resonances, and it uses periodicity to attenuate the propagative components. This approach achieves resolutions ∼5 times smaller than the operating wavelength and makes it possible to visualize independently edges aligned along different directions.

Citations