4.6 Article

Prestress tuning of negative refraction and wave channeling from flexural sources

期刊

APPLIED PHYSICS LETTERS
卷 114, 期 4, 页码 -

出版社

AIP Publishing
DOI: 10.1063/1.5084258

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资金

  1. ERC Advanced Grant Instabilities and nonlocal multiscale modelling of materials [ERC-2013-ADG-340561-INSTABILITIES]
  2. PRIN 2015 Multi-scale mechanical models for the design and optimization of micro-structured smart materials and metamaterials [2015LYYXA8-006]

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The quest for wave channeling and manipulation has driven a strong research effort on topological and architected materials, capable of propagating localized electromagnetical or mechanical signals. With reference to an elastic structural grid, the elements of which can sustain both axial and flexural deformations, it is shown that material interfaces can be created with structural properties tuned by prestress states to achieve total reflection, negative refraction, and strongly localized signal channeling. The achievement of a flat lens and topologically localized modes is demonstrated, and the tunability of the system allows these properties to hold for a broad range of wavelengths. An ingredient to obtain these effects is the use, suggested here and never attempted before, of concentrated pulsating moments. The important aspect of the proposed method is that states of prestress can be easily removed or changed to tune with continuity the propagational characteristics of the medium, so that a new use of vibration channeling and manipulation is envisaged for elastic materials. Published under license by AIP Publishing.

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