We explore broadband and omnidirectional low frequency sound screening based on locally resonant acoustic metamaterials. We show that the coupling of different resonant modes supported by Fabry-Perot cavities can efficiently generate asymmetric lineshapes in the transmission spectrum, leading to a broadband sound opacity. The Fabry-Perot cavities are space-coiled in order to shift the resonant modes under the diffraction edge, which guaranty the opacity band for all incident angles. Indeed, the deep subwavelength feature of the cavities leads to avoid diffraction that have been proved to be the main limitation of omnidirectional capabilities of locally resonant perforated plates. We experimentally reach an attenuation of few tens of dB at l...
Acoustic metasurfaces have been attracting much attention due to their effectiveness in controlling ...
International audience<font face="null"><span style="font-size: 13px;">Low frequency sound scree...
© 2018 Author(s). Slow sound is a frequently exploited phenomenon that metamaterials can induce in o...
International audienceThe aim of this study is to demonstrate an acoustic screening in a periodicall...
International audienceWe explore experimentally the role played by diffraction in the phenomenon of ...
International audienceWe report the practical realization of phononic membrane with sub-wavelength a...
Metamaterials are artificial structures which exhibit fascinating properties unreachable by traditio...
We report, both theoretically and experimentally, a type of ultra-thin metasurface-based low-frequen...
Space-coiling acoustic metasurfaces have been largely exploited and shown their outstanding wave man...
[EN] Using the concepts of slow sound and critical coupling, an ultra-thin acoustic metamaterial pan...
International audienceWe present an experimental demonstration of sound absorption tailorability, us...
Le domaine des métamatériaux acoustiques connaît un succès grandissant depuis maintenant une vingtai...
We numerically analyze the performance of labyrinthine acoustic metamaterials with internal channels...
Chapter 14International audienceAcoustic metamaterials consisting in massive materials perforated by...
Acoustic metasurfaces have been attracting much attention due to their effectiveness in controlling ...
International audience<font face="null"><span style="font-size: 13px;">Low frequency sound scree...
© 2018 Author(s). Slow sound is a frequently exploited phenomenon that metamaterials can induce in o...
International audienceThe aim of this study is to demonstrate an acoustic screening in a periodicall...
International audienceWe explore experimentally the role played by diffraction in the phenomenon of ...
International audienceWe report the practical realization of phononic membrane with sub-wavelength a...
Metamaterials are artificial structures which exhibit fascinating properties unreachable by traditio...
We report, both theoretically and experimentally, a type of ultra-thin metasurface-based low-frequen...
Space-coiling acoustic metasurfaces have been largely exploited and shown their outstanding wave man...
[EN] Using the concepts of slow sound and critical coupling, an ultra-thin acoustic metamaterial pan...
International audienceWe present an experimental demonstration of sound absorption tailorability, us...
Le domaine des métamatériaux acoustiques connaît un succès grandissant depuis maintenant une vingtai...
We numerically analyze the performance of labyrinthine acoustic metamaterials with internal channels...
Chapter 14International audienceAcoustic metamaterials consisting in massive materials perforated by...
Acoustic metasurfaces have been attracting much attention due to their effectiveness in controlling ...
International audience<font face="null"><span style="font-size: 13px;">Low frequency sound scree...
© 2018 Author(s). Slow sound is a frequently exploited phenomenon that metamaterials can induce in o...