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References

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  1. O. R. Wood, R. L. Abrams, T. J. Brides, “Mode Locking of a Transversely Excited Atmospheric Pressure CO2 Laser,” Appl. Phys. Lett. 7, 376 (1970).
    [CrossRef]
  2. D. J. Kuizenga, D. W. Phillion, T. Lund, A. E. Siegman, “Simultaneous Q switching and Mode-Locking in the CW Nd:YAG Laser,” Opt. Commun. 9, 221 (1973).
    [CrossRef]
  3. M. Born, E. Wolf, Principles of Optics (Pergamon, London, 1964), Chap. 1, p. 43.
  4. J. Randolph, J. Morrison, “Modulation Transfer Characteristics of an Acoustooptic Deflector,” Appl. Opt. 10, 1383 (1971).
    [CrossRef] [PubMed]
  5. R. W. Dixon, “Photoelastic Properties of Selected Materials and their Relevance for Applications to Acoustic Light Modulation and Scanners,” J. Appl. Phys. 38, 5149 (1967).
    [CrossRef]
  6. R. L. Abrams, D. A. Pinnow, “Acoustooptic Properties of Crystalline Germanium,” J. Appl. Phys. 1, 2765 (1970).
    [CrossRef]

1973 (1)

D. J. Kuizenga, D. W. Phillion, T. Lund, A. E. Siegman, “Simultaneous Q switching and Mode-Locking in the CW Nd:YAG Laser,” Opt. Commun. 9, 221 (1973).
[CrossRef]

1971 (1)

1970 (2)

O. R. Wood, R. L. Abrams, T. J. Brides, “Mode Locking of a Transversely Excited Atmospheric Pressure CO2 Laser,” Appl. Phys. Lett. 7, 376 (1970).
[CrossRef]

R. L. Abrams, D. A. Pinnow, “Acoustooptic Properties of Crystalline Germanium,” J. Appl. Phys. 1, 2765 (1970).
[CrossRef]

1967 (1)

R. W. Dixon, “Photoelastic Properties of Selected Materials and their Relevance for Applications to Acoustic Light Modulation and Scanners,” J. Appl. Phys. 38, 5149 (1967).
[CrossRef]

Abrams, R. L.

O. R. Wood, R. L. Abrams, T. J. Brides, “Mode Locking of a Transversely Excited Atmospheric Pressure CO2 Laser,” Appl. Phys. Lett. 7, 376 (1970).
[CrossRef]

R. L. Abrams, D. A. Pinnow, “Acoustooptic Properties of Crystalline Germanium,” J. Appl. Phys. 1, 2765 (1970).
[CrossRef]

Born, M.

M. Born, E. Wolf, Principles of Optics (Pergamon, London, 1964), Chap. 1, p. 43.

Brides, T. J.

O. R. Wood, R. L. Abrams, T. J. Brides, “Mode Locking of a Transversely Excited Atmospheric Pressure CO2 Laser,” Appl. Phys. Lett. 7, 376 (1970).
[CrossRef]

Dixon, R. W.

R. W. Dixon, “Photoelastic Properties of Selected Materials and their Relevance for Applications to Acoustic Light Modulation and Scanners,” J. Appl. Phys. 38, 5149 (1967).
[CrossRef]

Kuizenga, D. J.

D. J. Kuizenga, D. W. Phillion, T. Lund, A. E. Siegman, “Simultaneous Q switching and Mode-Locking in the CW Nd:YAG Laser,” Opt. Commun. 9, 221 (1973).
[CrossRef]

Lund, T.

D. J. Kuizenga, D. W. Phillion, T. Lund, A. E. Siegman, “Simultaneous Q switching and Mode-Locking in the CW Nd:YAG Laser,” Opt. Commun. 9, 221 (1973).
[CrossRef]

Morrison, J.

Phillion, D. W.

D. J. Kuizenga, D. W. Phillion, T. Lund, A. E. Siegman, “Simultaneous Q switching and Mode-Locking in the CW Nd:YAG Laser,” Opt. Commun. 9, 221 (1973).
[CrossRef]

Pinnow, D. A.

R. L. Abrams, D. A. Pinnow, “Acoustooptic Properties of Crystalline Germanium,” J. Appl. Phys. 1, 2765 (1970).
[CrossRef]

Randolph, J.

Siegman, A. E.

D. J. Kuizenga, D. W. Phillion, T. Lund, A. E. Siegman, “Simultaneous Q switching and Mode-Locking in the CW Nd:YAG Laser,” Opt. Commun. 9, 221 (1973).
[CrossRef]

Wolf, E.

M. Born, E. Wolf, Principles of Optics (Pergamon, London, 1964), Chap. 1, p. 43.

Wood, O. R.

O. R. Wood, R. L. Abrams, T. J. Brides, “Mode Locking of a Transversely Excited Atmospheric Pressure CO2 Laser,” Appl. Phys. Lett. 7, 376 (1970).
[CrossRef]

Appl. Opt. (1)

Appl. Phys. Lett. (1)

O. R. Wood, R. L. Abrams, T. J. Brides, “Mode Locking of a Transversely Excited Atmospheric Pressure CO2 Laser,” Appl. Phys. Lett. 7, 376 (1970).
[CrossRef]

J. Appl. Phys. (2)

R. W. Dixon, “Photoelastic Properties of Selected Materials and their Relevance for Applications to Acoustic Light Modulation and Scanners,” J. Appl. Phys. 38, 5149 (1967).
[CrossRef]

R. L. Abrams, D. A. Pinnow, “Acoustooptic Properties of Crystalline Germanium,” J. Appl. Phys. 1, 2765 (1970).
[CrossRef]

Opt. Commun. (1)

D. J. Kuizenga, D. W. Phillion, T. Lund, A. E. Siegman, “Simultaneous Q switching and Mode-Locking in the CW Nd:YAG Laser,” Opt. Commun. 9, 221 (1973).
[CrossRef]

Other (1)

M. Born, E. Wolf, Principles of Optics (Pergamon, London, 1964), Chap. 1, p. 43.

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Figures (1)

Fig. 1
Fig. 1

Proposed configuration for a germanium acoustooptic deflector.

Equations (7)

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R ( n 4 - 1 2 n ) 2 · ( Δ θ i ) 2 ,
Δ θ e = n 2 Δ θ i + n ( n 4 - 1 ) 2 ( Δ θ i ) 2 .
X = n 4 - 1 2 n · Δ θ i ,
Δ f = 2 n v λ Δ θ i max ,
Δ θ i max = 2 n n 4 - 1 β
N = 4 n 3 n 4 - 1 · β L λ ,
M 3 = n 8 p 2 ρ v 2 .

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