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Application of the acousto-optic effect to pressure measurements in ultrasound fields in water using a laser vibrometer
Author(s) -
James M. Buick,
John A. Cosgrove,
P.-A. Douissard,
Clive Greated,
B. Gilabert
Publication year - 2004
Publication title -
review of scientific instruments
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.605
H-Index - 165
eISSN - 1089-7623
pISSN - 0034-6748
DOI - 10.1063/1.1790556
Subject(s) - laser doppler vibrometer , hydrophone , optics , acoustics , materials science , refractive index , ultrasonic sensor , laser , laser scanning vibrometry , signal (programming language) , beam (structure) , transducer , optical path length , sound pressure , underwater , ultrasound , physics , laser beams , computer science , geology , oceanography , programming language
A non-intrusive measuring technique, applied to sensing and measuring acoustic waves at ultrasonic frequencies is considered. The method is optically based and so does not interfere with the ultrasound field. The measurement procedure relies on the acousto-optic effect, that is the change in refractive index which occurs with changing pressure in the ultrasound field. This change in refractive index is detected through the change in the path length of a laser beam propagating through the region of interest. Typically these changes are small corresponding to a physical change of the order of 10−6 m. Fourier analysis is used to separate the component of the signal corresponding to the pressure variation from background noise and vibrations which can be dominant. Application of the technique is illustrated for an underwater ultrasound transducer. Measurements are made using the optical technique and compared to measurements taken with a hydrophone. The effectiveness of the optical measuring technique is disc...

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