DocumentCode :
1365803
Title :
Change in piezoelectric boundary acoustic wave characteristics with overlay and metal grating materials
Author :
Wang, Yiliu ; Hashimoto, Ken-Ya ; Omori, Tatsuya ; Yamaguchi, Masatsune
Author_Institution :
Grad. Sch. of Eng., Chiba Univ., Chiba, Japan
Volume :
57
Issue :
1
fYear :
2010
Firstpage :
16
Lastpage :
22
Abstract :
This paper describes how the characteristics of shear-horizontal type piezoelectric boundary acoustic waves (PBAWs) change with combination of different overlay and metal grating materials. It is shown that PBAWs are supported in various structures provided that highly piezoelectric material(s) are employed as structural member(s). For verification, numerical simulation of different material combinations is done. The results are in good agreement with the qualitative prediction. That is, large electromechanical coupling factor K2 is obtainable when materials having small mass densities shear modulus c44 and shear velocity VBS; and materials having extremely large shear modulus c44 are chosen, respectively, for overlay and metallic grating. When YX-LiNbO3 is assumed as a substrate, for example, the best choice seems to be SiO2 and Au for overlay and metallic grating, respectively. Although metals with extremely large ?? and c44 such as W and Ta offer large K2, they may not be acceptable for practical PBAW applications because of their large electric resistivity.
Keywords :
acoustic waves; electrical resistivity; gold; lithium compounds; numerical analysis; piezoelectric materials; piezoelectricity; shear modulus; silicon compounds; Ag; AlN; Cu; LiNbO3-SiO2-Au; Mo; Si3N4; SiC; Ta; W; Y-cut X-propagating substrate structure; electric resistivity; electromechanical coupling factor; mass density shear modulus; material combinations; metal grating material; metallic grating; numerical simulation; overlay materials; piezoelectric materials; shear velocity; shear-horizontal type piezoelectric boundary acoustic waves; structural member; Acoustic materials; Acoustic waves; Electric resistance; Gold; Gratings; Inorganic materials; Numerical simulation; Packaging; Piezoelectric materials; Surface acoustic wave devices; Acoustics; Computer Simulation; Micro-Electrical-Mechanical Systems; Models, Theoretical; Niobium; Oxides; Refractometry; Scattering, Radiation;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2010.1373
Filename :
5361517
Link To Document :
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