arXiv · 1606.07776
Ultra-thin metamaterial for perfect and omnidirectional sound absorption
Abstract
Using the concepts of slow sound and of critical coupling, an ultra-thin acoustic metamaterial panel for perfect and omnidirectional absorption is theoretically and experimentally conceived in this work. The system is made of a rigid panel with a periodic distribution of thin closed slits, the upper wall of which is loaded by Helmholtz Resonators (HRs). The presence of resonators produces a slow sound propagation shifting the resonance frequency of the slit to the deep sub-wavelength regime ($λ/88$). By controlling the geometry of the slit and the HRs, the intrinsic visco-thermal losses can be tuned in order to exactly compensate the energy leakage of the system and fulfill the critical coupling condition to create the perfect absorption of sound in a large range of incidence angles due to the deep subwavelength behavior.
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Noé Jiménez, Weichun Huang, Vicent Romero-García, Vincent Pagneux, Jean-Philippe Groby. 2016-06-23. Ultra-thin metamaterial for perfect and omnidirectional sound absorption. https://doi.org/10.1063/1.4962328
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