Band structure of acoustic waves in phononic lattices: Two-dimensional composites with large acoustic mismatch

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Abstract

The finite-difference time-domain method is applied to the calculation of dispersion relations of acoustic waves in two-dimensional (2D) phononic lattices, i.e., periodic solid-solid, solid-liquid, and solid-vacuum composites, for which the conventional plane-wave-expansion method fails or converges very slowly. Numerical examples are developed for 2D structures with polyethylene, mercury, and vacuum cylinders forming a square lattice in an aluminum matrix. The implication of the calculated dispersion relations for ultrasound transmission experiments is discussed.

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Tanaka, Y., Tomoyasu, Y., & Tamura, S. I. (2000). Band structure of acoustic waves in phononic lattices: Two-dimensional composites with large acoustic mismatch. Physical Review B - Condensed Matter and Materials Physics, 62(11), 7387–7392. https://doi.org/10.1103/PhysRevB.62.7387

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