Phononic Graded Meta-MEMS for Elastic Wave Amplification and Filtering

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Abstract

Inspired by recent graded metamaterials designs, we create phononic arrays of micro-resonators for frequency signal amplification and wave filtering. Leveraging suspended waveguides on a thick silicon substrate, we hybridize surface Rayleigh and Lamb flexural waves to effectively achieve phononic signal control along predefined channels. The guided waves are then spatially controlled using a suitable grading of the micro-resonators, which provide high signal-to-noise ratio and simultaneously create phononic delay-lines. The proposed device can be used for sensing, wave filtering or energy harvesting. [2023-0117]

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Maspero, F., De Ponti, J. M., Iorio, L., Esposito, A., Bertacco, R., Matteo, A. D., … Ardito, R. (2023). Phononic Graded Meta-MEMS for Elastic Wave Amplification and Filtering. Journal of Microelectromechanical Systems, 32(6), 522–528. https://doi.org/10.1109/JMEMS.2023.3320198

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