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Modeling of a high frequency ultrasonic transducer using periodic structures
Authors:Maréchal P  Haumesser L  Tran-Huu-Hue L P  Holc J  Kuscer D  Lethiecq M  Feuillard G
Institution:

aFrançois-Rabelais University, LUSSI, FRE 2448 CNRS, ENIVL, rue de la Chocolaterie, 41034 Blois, France

bJoseph Stefan Institute, Jamova 39, Ljubljana, Slovenia

Abstract:Solidly mounted integrated transducers with a Bragg cell inserted between the piezoelectric film and the substrate are investigated for high frequency ultrasonic applications. A numerically stable recursive one dimensional transmission/reflection model was used to analyze the behavior of the periodic structure. This theoretical analysis includes the study of the influence of the acoustic properties of the constitutive layer, the effect of the number of cells and their arrangement. A 35 MHz integrated transducer consisting in a PZT ceramic laid down on a Au/PZT Bragg cell deposited on a porous substrate was fabricated and characterized. Both theoretical and experimental results highlight the interest of using a periodic structure for high frequency ultrasonic applications.
Keywords:Periodic structures  Piezoelectric transducer  High frequency
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