Title :
High velocity SAW using aluminum nitride film on unpolished nucleation side of free-standing CVD diamond
Author :
Elmazria, Omar ; Mortet, Vincent ; El Hakiki, Mohamed ; Nesladek, Milos ; Alnot, Patrick
fDate :
6/1/2003 12:00:00 AM
Abstract :
High performances surface acoustic wave (SAW) filters based on aluminium nitride (AlN)/diamond layered structure have been fabricated. The C-axis oriented aluminum nitride films with various thicknesses were sputtered on unpolished nucleation side of free-standing polycrystalline chemical vapor deposition (CVD) diamond obtained by silicon substrate etching. Experimental results show that high order modes as well as Rayleigh waves are excited. Experimental results are in good agreement with the theoretical dispersion curves determined by software simulation with Green´s function formalism. We demonstrate that high phase velocity first mode wave (so-called Sezawa wave) with high electromechanical coupling coefficient are obtained on AlN/diamond structure. This structure also has a low temperature coefficient of frequency (TCF), and preliminary results suggest that a zero TCF could be expected.
Keywords :
CVD coatings; Rayleigh waves; UHF filters; aluminium compounds; diamond; etching; nucleation; sputtered coatings; surface acoustic wave filters; surface acoustic waves; AlN-C; AlN/diamond layered structure; C-axis oriented AlN films; Green´s function formalism; Rayleigh waves; SAW filters; Sezawa wave; Si; Si substrate etching; chemical vapor deposited diamond; free-standing CVD diamond; high electromechanical coupling coefficient; high order modes; high phase velocity first mode wave; polycrystalline CVD diamond; surface acoustic wave filters; unpolished nucleation side; Acoustic waves; Aluminum nitride; Chemical vapor deposition; Filters; Green´s function methods; Semiconductor films; Silicon; Sputter etching; Substrates; Surface acoustic waves;
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
DOI :
10.1109/TUFFC.2003.1209558