Measurement of sound pressure sensitivity of high-frequency microphone using multiple harmonics in intense ultrasonic beams

Author:

Kamakura Tomoo1,Hayashi Hideo2,Yasuno Yoshinobu3,Nomura Hideyuki4

Affiliation:

1. Center for Industrial and Governmental Relations, The University of Electro-Communications

2. KGK Co., Ltd.

3. Kobayasi Institute of Physical Research

4. School of Informatics and Engineering, The University of Electro-Communications

Publisher

Acoustical Society of Japan

Subject

Acoustics and Ultrasonics

Reference18 articles.

1. 1) D. R. Bacon, "Nonlinear acoustics in ultrasound calibration and standards," Proc. 12th Int. Symp. Nonlinear Acoust., pp. 3–19 (1990).

2. 2) D. T. Blackstock, M. F. Hamilton and A. Pierce, "Progressive waves in lossless and lossy fluids," in Nonlinear Acoustics, M. F. Hamilton and D. T. Blackstock, Eds. (Academic Press, San Diego, 1998), Chap. 4.

3. 3) H. J. Bleeker and P. A. Lewin, "A novel method for determining calibration and behavior of PVDF ultrasonic hydrophone probes in the frequency range up to 100 MHz," IEEE Trans. Ultrason. Ferroelectr. Freq. Control, 47, 1354–1362 (2000).

4. 4) M. F. Hamilton and C. L. Morfey, "Model equations," in Nonlinear Acoustics, M. F. Hamilton and D. T. Blackstock, Eds. (Academic Press, San Diego, 1998), Chap. 3.

5. 5) E. G. Radulescu, P. A. Lewin, J. Wójcik and A. Nowicki, "Calibration of ultrasonic hydrophone probes up to 100 MHz using time gating frequency analysis and finite amplitude wave," Ultrasonics, 41, 247–254 (2003).

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