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Acoustic cloaking in two dimensions: a feasible approach

New Journal of Physics · 2008 · Vol. 10(6) · pp. 063015–063015
Daniel TorrentJosé Sánchez‐Dehesa

Abstract

This work proposes an acoustic structure feasible to engineer that accomplishes the requirements of acoustic cloaking design recently introduced by Cummer and Schurig (2007 New J. Phys. 9 45). The structure, which consists of a multilayered composite made of two types of isotropic acoustic metamaterials, exactly matches the conditions for the acoustic cloaking. It is also shown that the isotropic metamaterials needed can be made of sonic crystals containing two types of material cylinders, whose elastic parameters should be properly chosen in order to satisfy (in the homogenization limit) the acoustic properties under request. In contrast to electromagnetic cloaking, the structure here proposed verifies the acoustic cloaking in a wide range of wavelengths; its performance is guaranteed for any wavelength above a certain cutoff defined by the homogenization limit of the sonic crystal employed in its fabrication.

Metamaterials and Metasurfaces ApplicationsAcoustic Wave Phenomena ResearchElectromagnetic Scattering and AnalysisCloakingPhysicsHomogenization (climate)IsotropyMetamaterialAcousticsLimit (mathematics)WavelengthCloakAcoustic wave
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Cited by
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References
Controlling Electromagnetic Fields
Science · 2006 · 8,411 citations
One path to acoustic cloaking
New Journal of Physics · 2007 · 1,082 citations
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