DocumentCode :
410142
Title :
Dispersion characteristics versus strip thickness and material of SAW propagating under a periodic metal grating on GaAs substrate
Author :
Zhang, Victor Y. ; Gryba, T.
Author_Institution :
Inst. d´´Electronique, de Microelectronique, et de Nanotechnologie, UMR CNRS, Villeneuve d´´Ascq, France
Volume :
2
fYear :
2003
fDate :
5-8 Oct. 2003
Firstpage :
1700
Abstract :
Dispersion characteristics of SAW under a periodic metal grating on a GaAs substrate is studied based on the full impedance approach we presented at the 2002 IEEE Ultrasonics Symposium. Grating mode dispersion curves are calculated for the GaAs substrate coated with either a continuous uniform thin film or a discrete periodic array, taking into account both electrical and mechanical effects of the metallic strips system. Our numerical results show that stop band width increases in nearly direct proportion with the strip thickness (h/p) increase and, for h/p value higher than a certain limit, the stop band becomes independent of whether the grating is electrically open or shorted. Far from the stop band, SAW velocity can be either increased or decreased, depending essentially on the material of the grating which behaves like a uniform layer with a certain mean thickness. The decisive factor affecting the numerical accuracy is the number of space harmonics included in computations. The minimum number that is necessary varies from 6 to 12 depending on the strip material and as a function of h/p.
Keywords :
acoustic dispersion; acoustic wave propagation; acoustic wave velocity; gallium arsenide; piezoelectric thin films; substrates; surface acoustic wave devices; surface acoustic waves; SAW propagation; SAW velocity; continuous uniform thin film; discrete periodic array; dispersion characteristics; full impedance approach; grating mode dispersion curves; mean thickness; metallic strips system; periodic metal grating; space harmonics; strip material; strip thickness; uniform layer; Dielectric substrates; Frequency; Gallium arsenide; Gratings; Inorganic materials; Mechanical factors; Permittivity; Strips; Surface acoustic waves; Surface impedance;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Ultrasonics, 2003 IEEE Symposium on
Print_ISBN :
0-7803-7922-5
Type :
conf
DOI :
10.1109/ULTSYM.2003.1293238
Filename :
1293238
Link To Document :
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