A tunable sound-absorbing metamaterial based on coiled-up space

This paper presents a theoretical, numerical, and experimental investigation of a deep-subwavelength absorber based on the concept of coiled-up space. By adjusting a partition panel in the cavity to form an unequal-section channel, it is found that the resonance frequency of the absorber is easily t...

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Veröffentlicht in:Journal of applied physics 2018-05, Vol.123 (18)
Hauptverfasser: Wang, Yang, Zhao, Honggang, Yang, Haibin, Zhong, Jie, Zhao, Dan, Lu, Zhongliang, Wen, Jihong
Format: Artikel
Sprache:eng
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Zusammenfassung:This paper presents a theoretical, numerical, and experimental investigation of a deep-subwavelength absorber based on the concept of coiled-up space. By adjusting a partition panel in the cavity to form an unequal-section channel, it is found that the resonance frequency of the absorber is easily tuned and near-total absorption is acquired under a fixed deep-subwavelength thickness. The absorption mechanism induced by nearly critical coupling is revealed by graphically analyzing the reflection coefficient in the complex plane. In contrast to conventional techniques, near-total absorption can be adjusted over a wider frequency range. To further enhance the absorption, we demonstrate a broadband absorber with a relative bandwidth up to 33.3%.
ISSN:0021-8979
1089-7550
DOI:10.1063/1.5026022