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arxiv: 1410.1507 · v1 · pith:R7EX24TLnew · submitted 2014-10-03 · ❄️ cond-mat.mtrl-sci

Omnidirectional refractive devices for flexural waves based on graded phononic crystals

classification ❄️ cond-mat.mtrl-sci
keywords devicesrefractiveflexuralwavesanalyzedapproachdesigngraded
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Different omnidirectional refractive devices for flexural waves in thin plates are proposed and numerically analyzed. Their realization is explained by means phononic crystal plates, where a previously developed homogenization theory is employed for the design of graded index refractive devices. These devices consist of a circular cluster of inclusions with properly designed gradient in their radius. With this approach, the Luneburg and Maxwell lenses and a family of beam splitters for flexural waves are proposed and analyzed. Results show that these devices work properly in a broadband frequency region, being therefore an efficient approach for the design of refractive devices specially interesting for nano-scale applications.

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