DocumentCode :
1149596
Title :
Simulation of characteristics of a LiNbO/sub 3//diamond surface acoustic wave
Author :
Shikata, Shin-Ichi ; Hachigo, Akihiro ; Nakahata, Hideaki ; Narita, Masashi
Author_Institution :
Sumitomo Electr. Ind. Ltd., Osaka, Japan
Volume :
51
Issue :
10
fYear :
2004
Firstpage :
1308
Lastpage :
1313
Abstract :
High-frequency surface acoustic wave (SAW) devices based on diamond that have been produced to date utilize the SiO/sub 2//ZnO/diamond structure, which shows excellent characteristics of a phase velocity of over 10,000 m/s with a zero temperature coefficient; this structure has been successfully applied to high-frequency narrowband filters and resonators. To expand material systems to wideband applications, c-axis-oriented LiNbO/sub 3/ on diamond was studied and a coupling coefficient up to 9.0% was estimated to be obtained. In this paper, the characteristics of LiNbO/sub 3//diamond with the assumption that the LiNbO/sub 3/ film is a single crystal have been studied by theoretical calculations to find higher coupling coefficient conditions. Calculations are made for the phase velocity, the coupling coefficient, and the temperature coefficient of the Rayleigh wave and its higher mode Sezawa waves. As a result, LiNbO/sub 3//diamond is found to offer a very high electromechanical coupling coefficient of up to 16% in conjunction with a high phase velocity of 12,600 m/s and a small temperature coefficient of 25 ppm/deg. This characteristic is suitable for wide bandwidth applications in high-frequency SAW devices.
Keywords :
Rayleigh waves; diamond; electromechanical effects; elemental semiconductors; lithium compounds; surface acoustic wave resonator filters; surface acoustic waves; thin films; 10000 m/s; 12600 m/s; LiNbO/sub 3/ film; LiNbO/sub 3/-C; LiNbO/sub 3/-diamond surface acoustic wave; Rayleigh wave; Sezawa waves; coupling coefficient; electromechanical coupling coefficient; high-frequency SAW devices; high-frequency narrowband filters; high-frequency narrowband resonators; high-frequency surface acoustic wave devices; phase velocity; wide bandwidth applications; zero temperature coefficient; Acoustic waves; Narrowband; Piezoelectric films; Resonator filters; Surface acoustic wave devices; Surface acoustic waves; Temperature; Wafer bonding; Wideband; Zinc oxide;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2004.1350959
Filename :
1350959
Link To Document :
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