4.6 Article

Cavity-type hypersonic phononic crystals

期刊

NEW JOURNAL OF PHYSICS
卷 14, 期 -, 页码 -

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IOP PUBLISHING LTD
DOI: 10.1088/1367-2630/14/11/113032

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  1. Ministry of Higher Education and Research
  2. Nord-Pas de Calais Regional Council
  3. Fonds Europeen de Developpement Regional (FEDER) through the contract de Projets Etat Region CPER

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We report on the engineering of the phonon dispersion diagram in monodomain anodic porous alumina (APA) films through the porosity and physical state of the material residing in the nanopores. Lattice symmetry and inclusion materials are theoretically identified to be the main factors which control the hypersonic acoustic wave propagation. This involves the interaction between the longitudinal and the transverse modes in the effective medium and a flat band characteristic of the material residing in the cavities. Air and filled nanopores, therefore, display markedly different dispersion relations and the inclusion materials lead to a locally resonant structural behavior uniquely determining their properties under confinement. APA films emerge as a new platform to investigate the rich acoustic phenomena of structured composite matter.

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