Applied Physics Letters · 2014 · 61 citations · 21 references
Biomedical AcousticsAeroacousticsEngineeringAcoustic MetamaterialMechanical EngineeringGradient Index MediaMetamaterialsUnderwater AcousticOcean AcousticsPhysical AcousticMetamaterial ShellAcoustic MaterialSound PropagationRubber CylindersAcoustic MethodsAcoustic PropagationUltrasoundAcoustic Wave DevicesOcean EngineeringApplied PhysicsOcean Acoustic
Gradient index media, which are designed by varying local element properties in given geometry, have been utilized to manipulate acoustic waves for a variety of devices. This study presents a cylindrical, two-dimensional acoustic “black hole” design that functions as an omnidirectional absorber for underwater applications. The design features a metamaterial shell that focuses acoustic energy into the shell's core. Multiple scattering theory was used to design layers of rubber cylinders with varying filling fractions to produce a linearly graded sound speed profile through the structure. Measured pressure intensity agreed with predicted results over a range of frequencies within the homogenization limit.
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Extreme-angle broadband metamaterial lens
Nathan Kundtz, David R. Smith · Nature Materials · 2009 · 640 citations
David R. Smith, Jack J. Mock, Anthony F. Starr et al. · Physical Review E · 2005 · 376 citations · Full text
Gradient-index phononic crystals
Sz‐Chin Steven Lin, Tony Jun Huang, Jia-Hong Sun et al. · Physical Review B · 2009 · 318 citations