Metasurface for Water-to-Air Sound Transmission

Effective transmission of sound from water to air is crucial for the enhancement of the detection sensitivity of underwater sound. However, only 0.1% of the acoustic energy is naturally transmitted at such a boundary. At audio frequencies, quarter-wave plates or multilayered antireflection coatings...

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Veröffentlicht in:Physical review letters 2018-01, Vol.120 (4), p.044302-044302, Article 044302
Hauptverfasser: Bok, Eun, Park, Jong Jin, Choi, Haejin, Han, Chung Kyu, Wright, Oliver B, Lee, Sam H
Format: Artikel
Sprache:eng
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Zusammenfassung:Effective transmission of sound from water to air is crucial for the enhancement of the detection sensitivity of underwater sound. However, only 0.1% of the acoustic energy is naturally transmitted at such a boundary. At audio frequencies, quarter-wave plates or multilayered antireflection coatings are too bulky for practical use for such enhancement. Here we present an acoustic metasurface of a thickness of only ∼λ/100, where λ is the wavelength in air, consisting of an array of meta-atoms that each contain a set of membranes and an air-filled cavity. We experimentally demonstrate that such a meta-atom increases the transmission of sound at ∼700  Hz by 2 orders of magnitude, allowing about 30% of the incident acoustic power from water to be transmitted into air. Applications include underwater sonic sensing and communication.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.120.044302