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arxiv: 1509.05213 · v1 · pith:732IO6XDnew · submitted 2015-09-17 · ❄️ cond-mat.mtrl-sci

Universality and optimality of band-gaps in laminated media

classification ❄️ cond-mat.mtrl-sci
keywords propertiesspectraband-gapsmaterialsmulti-physicalrepresentationuniversalaccording
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We find that the frequency spectra of layered phononic and photonic composites admit a universal struc- ture, independent of the geometry of the periodic-cell and the specific physical properties. We show that this representation extends to highly deformable and multi-physical materials of tunable spectra. The structure is employed to establish universal properties of the corresponding band-gaps, and to rigorously determine their sta- tistical and optimal characteristics. Specifically, we investigate the density of the gaps, their maximal width and expected value. As a result, rules for tailoring the laminate according to desired spectra properties follow. Our representation further facilitates characterizing the tunability of the band-structure of soft and multi-physical materials.

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