Theoretical requirements for broadband perfect absorption of acoustic waves by ultra-thin elastic meta-films.
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ABSTRACT: We derive and numerically demonstrate that perfect absorption of elastic waves can be achieved in two types of ultra-thin elastic meta-films: one requires a large value of almost pure imaginary effective mass density and a free space boundary, while the other requires a small value of almost pure imaginary effective modulus and a hard wall boundary. When the pure imaginary density or modulus exhibits certain frequency dispersions, the perfect absorption effect becomes broadband, even in the low frequency regime. Through a model analysis, we find that such almost pure imaginary effective mass density with required dispersion for perfect absorption can be achieved by elastic metamaterials with large damping. Our work provides a feasible approach to realize broadband perfect absorption of elastic waves in ultra-thin films.
SUBMITTER: Duan Y
PROVIDER: S-EPMC4505311 | biostudies-other | 2015
REPOSITORIES: biostudies-other
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