Abstract

Wedge waves (WWs) in wedges, including their dispersion characteristics and mode transformation, are investigated using the laser ultrasound technique. Pulsed laser excitation and optical deflection beam method for detection are used to record WWs. Numerous WWs are detected by scanning the excitation laser along the wedge tip. Dispersions of WWs are obtained by using the two-dimensional (2D) Fourier transformation method, and different WW orders are revealed on the wedges. Mode transformation is determined by fixing the distance between the excitation and detection position, as well as by scanning the samples along the normal direction of the wedge tip.

© 2011 Chinese Optics Letters

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X. Zhou and H. Zhao, Acta Opt. Sin. (in Chinese) 29, 1563 (2009).

2008 (2)

L. Yuan, X. Ren, G. Yan, Z. Shen, X. Ni, J. Lu, and Y. Zhang, Chinese J. Lasers (in Chinese) 35, 120 (2008).

S.-W. Tang and C.-H. Yang, IEEE Trans. Ultrason. Ferroelectr. Freq. Control 55, 2674 (2008).

2007 (2)

Y. Shi, Z. Shen, X. Ni, and J. Lu, Proc. SPIE 6825, 682511 (2007).

V. V. Krylov and G. V. Pritchard, Applied Acoustics 68, 97 (2007).

2006 (1)

C.-H. Yang and C.-Z. Tsen, IEEE Trans. Ultrason. Ferroelectr. Freq. Control 53, 754 (2006).

1998 (1)

V. V. Krylov, J. Acoust. Soc. Am. 103, 767 (1998).

1994 (2)

D. Auribault, X. Jia, M. Debilly, and G. Quentin, J. Phys. Iv 4, 737 (1994).

V. V. Krylov, in Proceedings of 1994 IEEE Ultrasonics Symposium 1-3, 793 (1994).

1992 (1)

X. Jia and M. de Billy, Appl. Phys. Lett. 61, 2970 (1992).

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J. Mckenna, G. D. Boyd, and R. N. Thurston, IEEE Trans. Sonics Ultr. Su21, 178 (1974).

1973 (1)

P. E. Lagasse, I. M. Mason, and E. A. Ash, IEEE Trans. Microw. Theory Mt21, 225 (1973).

1972 (1)

P. E. Lagasse, Electron. Lett. 8, 372 (1972).

1971 (1)

I. M. Mason, R. M. Delarue, R. V. Schmidt, E. A. Ash, and P. E. Lagasse, Electron. Lett. 7, 395 (1971).

Ash, E. A.

P. E. Lagasse, I. M. Mason, and E. A. Ash, IEEE Trans. Microw. Theory Mt21, 225 (1973).

I. M. Mason, R. M. Delarue, R. V. Schmidt, E. A. Ash, and P. E. Lagasse, Electron. Lett. 7, 395 (1971).

Auribault, D.

D. Auribault, X. Jia, M. Debilly, and G. Quentin, J. Phys. Iv 4, 737 (1994).

Billy, M. de

X. Jia and M. de Billy, Appl. Phys. Lett. 61, 2970 (1992).

Boyd, G. D.

J. Mckenna, G. D. Boyd, and R. N. Thurston, IEEE Trans. Sonics Ultr. Su21, 178 (1974).

Debilly, M.

D. Auribault, X. Jia, M. Debilly, and G. Quentin, J. Phys. Iv 4, 737 (1994).

Delarue, R. M.

I. M. Mason, R. M. Delarue, R. V. Schmidt, E. A. Ash, and P. E. Lagasse, Electron. Lett. 7, 395 (1971).

Jia, X.

D. Auribault, X. Jia, M. Debilly, and G. Quentin, J. Phys. Iv 4, 737 (1994).

X. Jia and M. de Billy, Appl. Phys. Lett. 61, 2970 (1992).

Krylov, V. V.

V. V. Krylov and G. V. Pritchard, Applied Acoustics 68, 97 (2007).

V. V. Krylov, J. Acoust. Soc. Am. 103, 767 (1998).

V. V. Krylov, in Proceedings of 1994 IEEE Ultrasonics Symposium 1-3, 793 (1994).

Lagasse, P. E.

P. E. Lagasse, I. M. Mason, and E. A. Ash, IEEE Trans. Microw. Theory Mt21, 225 (1973).

P. E. Lagasse, Electron. Lett. 8, 372 (1972).

I. M. Mason, R. M. Delarue, R. V. Schmidt, E. A. Ash, and P. E. Lagasse, Electron. Lett. 7, 395 (1971).

Lu, J.

L. Yuan, X. Ren, G. Yan, Z. Shen, X. Ni, J. Lu, and Y. Zhang, Chinese J. Lasers (in Chinese) 35, 120 (2008).

Y. Shi, Z. Shen, X. Ni, and J. Lu, Proc. SPIE 6825, 682511 (2007).

Mason, I. M.

P. E. Lagasse, I. M. Mason, and E. A. Ash, IEEE Trans. Microw. Theory Mt21, 225 (1973).

I. M. Mason, R. M. Delarue, R. V. Schmidt, E. A. Ash, and P. E. Lagasse, Electron. Lett. 7, 395 (1971).

Mckenna, J.

J. Mckenna, G. D. Boyd, and R. N. Thurston, IEEE Trans. Sonics Ultr. Su21, 178 (1974).

Ni, X.

L. Yuan, X. Ren, G. Yan, Z. Shen, X. Ni, J. Lu, and Y. Zhang, Chinese J. Lasers (in Chinese) 35, 120 (2008).

Y. Shi, Z. Shen, X. Ni, and J. Lu, Proc. SPIE 6825, 682511 (2007).

Pritchard, G. V.

V. V. Krylov and G. V. Pritchard, Applied Acoustics 68, 97 (2007).

Quentin, G.

D. Auribault, X. Jia, M. Debilly, and G. Quentin, J. Phys. Iv 4, 737 (1994).

Ren, X.

L. Yuan, X. Ren, G. Yan, Z. Shen, X. Ni, J. Lu, and Y. Zhang, Chinese J. Lasers (in Chinese) 35, 120 (2008).

Schmidt, R. V.

I. M. Mason, R. M. Delarue, R. V. Schmidt, E. A. Ash, and P. E. Lagasse, Electron. Lett. 7, 395 (1971).

Shen, Z.

L. Yuan, X. Ren, G. Yan, Z. Shen, X. Ni, J. Lu, and Y. Zhang, Chinese J. Lasers (in Chinese) 35, 120 (2008).

Y. Shi, Z. Shen, X. Ni, and J. Lu, Proc. SPIE 6825, 682511 (2007).

Shi, Y.

Y. Shi, Z. Shen, X. Ni, and J. Lu, Proc. SPIE 6825, 682511 (2007).

Tang, S.-W.

S.-W. Tang and C.-H. Yang, IEEE Trans. Ultrason. Ferroelectr. Freq. Control 55, 2674 (2008).

Thurston, R. N.

J. Mckenna, G. D. Boyd, and R. N. Thurston, IEEE Trans. Sonics Ultr. Su21, 178 (1974).

Tsen, C.-Z.

C.-H. Yang and C.-Z. Tsen, IEEE Trans. Ultrason. Ferroelectr. Freq. Control 53, 754 (2006).

Yan, G.

L. Yuan, X. Ren, G. Yan, Z. Shen, X. Ni, J. Lu, and Y. Zhang, Chinese J. Lasers (in Chinese) 35, 120 (2008).

Yang, C.-H.

S.-W. Tang and C.-H. Yang, IEEE Trans. Ultrason. Ferroelectr. Freq. Control 55, 2674 (2008).

C.-H. Yang and C.-Z. Tsen, IEEE Trans. Ultrason. Ferroelectr. Freq. Control 53, 754 (2006).

Yuan, L.

L. Yuan, X. Ren, G. Yan, Z. Shen, X. Ni, J. Lu, and Y. Zhang, Chinese J. Lasers (in Chinese) 35, 120 (2008).

Zhang, Y.

L. Yuan, X. Ren, G. Yan, Z. Shen, X. Ni, J. Lu, and Y. Zhang, Chinese J. Lasers (in Chinese) 35, 120 (2008).

Zhao, H.

X. Zhou and H. Zhao, Acta Opt. Sin. (in Chinese) 29, 1563 (2009).

Zhou, X.

X. Zhou and H. Zhao, Acta Opt. Sin. (in Chinese) 29, 1563 (2009).

Acta Opt. Sin. (in Chinese) (1)

X. Zhou and H. Zhao, Acta Opt. Sin. (in Chinese) 29, 1563 (2009).

Appl. Phys. Lett. (1)

X. Jia and M. de Billy, Appl. Phys. Lett. 61, 2970 (1992).

Applied Acoustics (1)

V. V. Krylov and G. V. Pritchard, Applied Acoustics 68, 97 (2007).

Chinese J. Lasers (in Chinese) (1)

L. Yuan, X. Ren, G. Yan, Z. Shen, X. Ni, J. Lu, and Y. Zhang, Chinese J. Lasers (in Chinese) 35, 120 (2008).

Electron. Lett. (2)

I. M. Mason, R. M. Delarue, R. V. Schmidt, E. A. Ash, and P. E. Lagasse, Electron. Lett. 7, 395 (1971).

P. E. Lagasse, Electron. Lett. 8, 372 (1972).

IEEE Trans. Microw. Theory (1)

P. E. Lagasse, I. M. Mason, and E. A. Ash, IEEE Trans. Microw. Theory Mt21, 225 (1973).

IEEE Trans. Sonics Ultr. (1)

J. Mckenna, G. D. Boyd, and R. N. Thurston, IEEE Trans. Sonics Ultr. Su21, 178 (1974).

IEEE Trans. Ultrason. Ferroelectr. Freq. Control (2)

S.-W. Tang and C.-H. Yang, IEEE Trans. Ultrason. Ferroelectr. Freq. Control 55, 2674 (2008).

C.-H. Yang and C.-Z. Tsen, IEEE Trans. Ultrason. Ferroelectr. Freq. Control 53, 754 (2006).

in Proceedings of 1994 IEEE Ultrasonics Symposium (1)

V. V. Krylov, in Proceedings of 1994 IEEE Ultrasonics Symposium 1-3, 793 (1994).

J. Acoust. Soc. Am. (1)

V. V. Krylov, J. Acoust. Soc. Am. 103, 767 (1998).

J. Phys. Iv (1)

D. Auribault, X. Jia, M. Debilly, and G. Quentin, J. Phys. Iv 4, 737 (1994).

Proc. SPIE (1)

Y. Shi, Z. Shen, X. Ni, and J. Lu, Proc. SPIE 6825, 682511 (2007).

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