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Article Dans Une Revue Comptes Rendus. Physique Année : 2009

Negative bending mode curvature via Robin boundary conditions

Résumé

We examine the band spectrum, and associated Floquet–Bloch eigensolutions, arising in straight walled acoustic waveguides that have periodic structure along the guide. Homogeneous impedance (Robin) conditions are imposed along the guide walls and we find that in certain circumstances, negative curvature of the lowest (bending) mode can be achieved. This is unexpected, and has not been observed in a variety of physical situations examined by other authors. Further unexpected properties include the existence of the bending mode only on a subset of the Brillouin zone, as well as permitting otherwise unobtainable velocities of energy transmission. We conclude with a discussion of how such boundary conditions might be physically reproduced using effective conditions and homogenization theory, although the methodology to achieve these effective conditions is an open problem.
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Dates et versions

hal-00439081 , version 1 (05-12-2009)

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  • HAL Id : hal-00439081 , version 1

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Samuel Adams, Richard Craster, Sébastien Guenneau. Negative bending mode curvature via Robin boundary conditions. Comptes Rendus. Physique, 2009, 10, pp.437-446. ⟨hal-00439081⟩
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