You are currently logged in as an
Institutional Subscriber.
If you would like to logout,
please click on the button below.
Home / Publications / E-library page
Only AES members and Institutional Journal Subscribers can download
For many years, the engineering limitations in a single loudspeaker have offered no solution to the problem of delivering sound only to parts of an audience. Precise control on how sound is delivered to an audience has required multiple loudspeakers, either through their distribution or through DSP. The recent uptake of acoustic metamaterials, however, seem to offer different solutions. Using devices based on acoustic metamaterials, for instance, brings to acoustics design principles that come directly from optics, at a reasonable manufacturing cost. In this work, we design, numerically simulate, and characterise an acoustic converging superlens: a 3D-printed device capable of focusing an incoming plane wave at a distance less than one wavelength. We show how a loudspeaker at a fixed distance from the lens results in an “image” of the source at a distance prescribed by the thin-lens equation. Finally, we propose possible applications of such an acoustic superlens to future audio experiences.
Author (s): Chisari, Letizia; Ricciardi, Enrico; Memoli, Gianluca
Affiliation:
Metasonixx Ltd, London, UK; Labirinti Acustici, Milan, Italy; University of Sussex, Brighton, UK
(See document for exact affiliation information.)
AES Convention: 152
Paper Number:672
Publication Date:
2022-05-06
Import into BibTeX
Session subject:
Loudspeakers and headphones
Permalink: https://aes2.org/publications/elibrary-page/?id=21733
(536KB)
Click to purchase paper as a non-member or login as an AES member. If your company or school subscribes to the E-Library then switch to the institutional version. If you are not an AES member Join the AES. If you need to check your member status, login to the Member Portal.
Chisari, Letizia; Ricciardi, Enrico; Memoli, Gianluca; 2022; Numerical and Experimental Analysis of a Metamaterial-based Acoustic Superlens [PDF]; Metasonixx Ltd, London, UK; Labirinti Acustici, Milan, Italy; University of Sussex, Brighton, UK; Paper 672; Available from: https://aes2.org/publications/elibrary-page/?id=21733
Chisari, Letizia; Ricciardi, Enrico; Memoli, Gianluca; Numerical and Experimental Analysis of a Metamaterial-based Acoustic Superlens [PDF]; Metasonixx Ltd, London, UK; Labirinti Acustici, Milan, Italy; University of Sussex, Brighton, UK; Paper 672; 2022 Available: https://aes2.org/publications/elibrary-page/?id=21733