DocumentCode
1764455
Title
Volume dependence in handel´s model of quartz crystal resonator noise
Author
Sthal, F. ; Devel, Michel ; Ghosh, Sudip ; Imbaud, J. ; Cibiel, Gilles ; Bourquin, Roger
Author_Institution
Franche-Comte Electron. Mec. Thermique et Opt.-Sci. et Technol. (FEMTO-ST) Inst., Univ. of Franche-Comte (UFC), Besancon, France
Volume
60
Issue
9
fYear
2013
fDate
Sep. 2013
Firstpage
1971
Lastpage
1977
Abstract
Although criticized by many, Handel´s quantum model for 1/f noise remains the only model giving a quantitative estimation of the level of intrinsic 1/f noise in quartz crystal resonators that is compatible with the best experimental results. In this paper, we reconsider the volume dependence in this model. We first argue that an acoustic volume, representing the volume in which the vibration energy is trapped, should be used instead of the geometrical volume between the electrodes. Then, we show that because there is an implicit dependence of the quality factor of the resonator with its thickness, the net effect of Handel´s formula is not an increase of noise proportionally to the thickness of the resonator, as could be naïvely expected, but a net decrease when thickness increases. Finally, we show that a plot of Q4Sy versus the acoustic volume, instead of the usual Sy plot, could be useful to compare the quality of acoustic resonators having very different resonance frequencies.
Keywords
1/f noise; acoustic resonators; crystal resonators; 1/f noise; Handel quantum model; acoustic resonators; acoustic volume; quality factor; quartz crystal resonator noise; resonance frequency; vibration energy; volume dependence; Acoustics; Crystals; Electrodes; Noise; Q-factor; Resonant frequency; Solid modeling;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/TUFFC.2013.2782
Filename
6587406
Link To Document