4.3 Article Proceedings Paper

Measurement of locally resonant band gaps in a surface phononic crystal with inverted conical pillars

Journal

JAPANESE JOURNAL OF APPLIED PHYSICS
Volume 57, Issue 7, Pages -

Publisher

IOP Publishing Ltd
DOI: 10.7567/JJAP.57.07LB01

Keywords

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Funding

  1. Ministry of Science and Technology (MOST), Taiwan [MOST 103-2221-E-224-002-MY3]

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In this paper, we numerically and experimentally study locally resonant (LR) band gaps for surface acoustic waves (SAWs) in a honeycomb array of inverted conical pillars grown on the surface of a 128 degrees YX lithium-niobate substrate. We show that the inverted conical pillars can be used to generate lower LR band gaps below the sound cone. This lowering effect is caused by the increase in the effective pillar mass without increasing the effective stiffness. We employ the finite-element method to calculate the LR band gaps and wideband slanted-finger interdigital transducers to measure the transmission of SAWs. Numerical results show that SAWs are prohibited from propagating through the structure in the lowered LR band gaps. Obvious LR band-gap lowering is observed in the experimental result of a surface phononic crystal with a honeycomb array of inverted conical pillars. The results enable enhanced control over the phononic metamaterial and surface structures, which may have applications in low-frequency waveguiding, acoustic isolation, acoustic absorbers, and acoustic filters. (C) 2018 The Japan Society of Applied Physics

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