DocumentCode
1760957
Title
Analysis of signals propagating in a phononic crystal PZT layer deposited on a silicon substrate
Author
Hladky-Hennion, A.-C. ; Vasseur, Jerome ; Dubus, B. ; Morvan, B. ; Wilkie-Chancellier, Nicolas ; Martinez, Luis
Author_Institution
Inst. d´Electron. de Microelectron. et de Nanotechnol., Lille, France
Volume
60
Issue
12
fYear
2013
fDate
Dec. 2013
Firstpage
2607
Lastpage
2614
Abstract
The design of a stop-band filter constituted by a periodically patterned lead zirconate titanate (PZT) layer, polarized along its thickness, deposited on a silicon substrate and sandwiched between interdigitated electrodes for emission/reception of guided elastic waves, is investigated. The filter characteristics are theoretically evaluated by using finite element simulations: dispersion curves of a patterned PZT layer with a specific pattern geometry deposited on a silicon substrate present an absolute stop band. The whole structure is modeled with realistic conditions, including appropriate interdigitated electrodes to propagate a guided mode in the piezoelectric layer. A robust method for signal analysis based on the Gabor transform is applied to treat transmitted signals; extract attenuation, group delays, and wave number variations versus frequency; and identify stop-band filter characteristics.
Keywords
Gabor filters; acoustic dispersion; acoustic filters; acoustic signal processing; acoustic wave propagation; acoustic wave transmission; finite element analysis; lead compounds; phononic crystals; Gabor transform; PZT; Si; attenuation extraction; dispersion curves; filter characteristics; finite element simulations; group delays; guided elastic wave emission; guided elastic wave reception; interdigitated electrodes; patterned PZT layer; periodically patterned lead zirconate titanate; phononic crystal; signal analysis; signal propagation; signal transmission; silicon substrate; specific pattern geometry; stop-band filter; wave number variations; Crystals; Finite element analysis; Gabor filters; Geometry; Silicon; Substrates;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/TUFFC.2013.2859
Filename
6666081
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