Abstract
This article reports the design concept of a novel acoustic beam aperture modifier using butt-jointed gradient-index phononic crystals (GRIN PCs) consisting of steel cylinders embedded in a homogeneous epoxy background. By gradually tuning the period of a GRIN PC, the propagating direction of acoustic waves can be continuously bent to follow a sinusoidal trajectory in the structure. The aperture of an acoustic beam can therefore be shrunk or expanded through change of the gradient refractive index profiles of the butt-jointed GRIN PCs. Our computational results elucidate the effectiveness of the proposed acoustic beam aperture modifier. Such an acoustic device can be fabricated through a simple process and will be valuable in applications, such as biomedical imaging and surgery, nondestructive evaluation, communication, and acoustic absorbers. © 2012 American Institute of Physics.
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CITATION STYLE
Lin, S. C. S., Tittmann, B. R., & Huang, T. J. (2012). Design of acoustic beam aperture modifier using gradient-index phononic crystals. Journal of Applied Physics, 111(12). https://doi.org/10.1063/1.4729803
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