DocumentCode
1391638
Title
Experimental verification of the Kramers-Kronig relationship for acoustic waves
Author
Lee, Chin C. ; Lahham, Mike ; Martin, B.G.
Author_Institution
Dept. of Electr. & Comput. Eng., California Univ., Irvine, CA, USA
Volume
37
Issue
4
fYear
1990
fDate
7/1/1990 12:00:00 AM
Firstpage
286
Lastpage
294
Abstract
A spectral technique for effectively and accurately measuring acoustic attenuation over a wide frequency range is reported. The spectral technique for phase measurement developed by W. Sachse and Y.H. Pao (1978) was used to determine the acoustic dispersion. For acoustic waves, a very simple and useful Kramers-Kronig relationship was previously derived by M. O´Donnell, E.T. Jaynes, and J.G. Miller (1981). The attenuation was calculated, using this relationship, from the measured dispersion and then compared with the attenuation that was measured independently. Dispersion was deduced from the measured attenuation and compared with the measured dispersion. The results of two highly attenuative specimens are presented. The agreement between the calculated attenuation and measured attenuation is excellent. The deduced dispersion also agrees well with the measured one. This agreement verifies the simple Kramers-Kronig relationship used. It further shows the accuracy of the spectral techniques for attenuation and dispersion measurements over a wide frequency range.<>
Keywords
Kramers-Kronig relations; acoustic dispersion; acoustic wave velocity measurement; acoustic waves; attenuation measurement; phase measurement; Kramers-Kronig relationship; acoustic attenuation; acoustic dispersion; acoustic waves; dispersion measurements; phase measurement; spectral technique; Acoustic measurements; Acoustic waves; Attenuation measurement; Dispersion; Electromagnetic measurements; Frequency measurement; Joining processes; Linearity; Optical attenuators; Optical refraction;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/58.56489
Filename
56489
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