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  1. S. L. Chin, D. K. Evans, R. D. McAlpine, W. N. Selander, Appl. Opt. 21, 65 (1982).
    [CrossRef] [PubMed]
  2. S. L. Chin, D. K. Evans, R. D. McAlpine, F. K. McClusky, E. B. Selkirk, Opt. Commun. 31, 235 (1982); R. D. McAlpine, D. K. Evans, F. K. McClusky, J. Chem. Phys. 73, 1153 (1980); D. K. Evans, R. D. McAlpine, H. M. Adams, J. Chem. Phys. 77, 3551 (1982).
    [CrossRef]
  3. Recently J. R. Ackerhalt, D. O. Ham, A. V. Nowak, C. R. Phipps, S. C. Thomas observed saturation for SF6 absorbing CO2 laser radiation; J. R. Ackerhalt, Los Alamos; private communication.

1982 (2)

S. L. Chin, D. K. Evans, R. D. McAlpine, F. K. McClusky, E. B. Selkirk, Opt. Commun. 31, 235 (1982); R. D. McAlpine, D. K. Evans, F. K. McClusky, J. Chem. Phys. 73, 1153 (1980); D. K. Evans, R. D. McAlpine, H. M. Adams, J. Chem. Phys. 77, 3551 (1982).
[CrossRef]

S. L. Chin, D. K. Evans, R. D. McAlpine, W. N. Selander, Appl. Opt. 21, 65 (1982).
[CrossRef] [PubMed]

Ackerhalt, J. R.

Recently J. R. Ackerhalt, D. O. Ham, A. V. Nowak, C. R. Phipps, S. C. Thomas observed saturation for SF6 absorbing CO2 laser radiation; J. R. Ackerhalt, Los Alamos; private communication.

Chin, S. L.

S. L. Chin, D. K. Evans, R. D. McAlpine, W. N. Selander, Appl. Opt. 21, 65 (1982).
[CrossRef] [PubMed]

S. L. Chin, D. K. Evans, R. D. McAlpine, F. K. McClusky, E. B. Selkirk, Opt. Commun. 31, 235 (1982); R. D. McAlpine, D. K. Evans, F. K. McClusky, J. Chem. Phys. 73, 1153 (1980); D. K. Evans, R. D. McAlpine, H. M. Adams, J. Chem. Phys. 77, 3551 (1982).
[CrossRef]

Evans, D. K.

S. L. Chin, D. K. Evans, R. D. McAlpine, F. K. McClusky, E. B. Selkirk, Opt. Commun. 31, 235 (1982); R. D. McAlpine, D. K. Evans, F. K. McClusky, J. Chem. Phys. 73, 1153 (1980); D. K. Evans, R. D. McAlpine, H. M. Adams, J. Chem. Phys. 77, 3551 (1982).
[CrossRef]

S. L. Chin, D. K. Evans, R. D. McAlpine, W. N. Selander, Appl. Opt. 21, 65 (1982).
[CrossRef] [PubMed]

Ham, D. O.

Recently J. R. Ackerhalt, D. O. Ham, A. V. Nowak, C. R. Phipps, S. C. Thomas observed saturation for SF6 absorbing CO2 laser radiation; J. R. Ackerhalt, Los Alamos; private communication.

McAlpine, R. D.

S. L. Chin, D. K. Evans, R. D. McAlpine, W. N. Selander, Appl. Opt. 21, 65 (1982).
[CrossRef] [PubMed]

S. L. Chin, D. K. Evans, R. D. McAlpine, F. K. McClusky, E. B. Selkirk, Opt. Commun. 31, 235 (1982); R. D. McAlpine, D. K. Evans, F. K. McClusky, J. Chem. Phys. 73, 1153 (1980); D. K. Evans, R. D. McAlpine, H. M. Adams, J. Chem. Phys. 77, 3551 (1982).
[CrossRef]

McClusky, F. K.

S. L. Chin, D. K. Evans, R. D. McAlpine, F. K. McClusky, E. B. Selkirk, Opt. Commun. 31, 235 (1982); R. D. McAlpine, D. K. Evans, F. K. McClusky, J. Chem. Phys. 73, 1153 (1980); D. K. Evans, R. D. McAlpine, H. M. Adams, J. Chem. Phys. 77, 3551 (1982).
[CrossRef]

Nowak, A. V.

Recently J. R. Ackerhalt, D. O. Ham, A. V. Nowak, C. R. Phipps, S. C. Thomas observed saturation for SF6 absorbing CO2 laser radiation; J. R. Ackerhalt, Los Alamos; private communication.

Phipps, C. R.

Recently J. R. Ackerhalt, D. O. Ham, A. V. Nowak, C. R. Phipps, S. C. Thomas observed saturation for SF6 absorbing CO2 laser radiation; J. R. Ackerhalt, Los Alamos; private communication.

Selander, W. N.

Selkirk, E. B.

S. L. Chin, D. K. Evans, R. D. McAlpine, F. K. McClusky, E. B. Selkirk, Opt. Commun. 31, 235 (1982); R. D. McAlpine, D. K. Evans, F. K. McClusky, J. Chem. Phys. 73, 1153 (1980); D. K. Evans, R. D. McAlpine, H. M. Adams, J. Chem. Phys. 77, 3551 (1982).
[CrossRef]

Thomas, S. C.

Recently J. R. Ackerhalt, D. O. Ham, A. V. Nowak, C. R. Phipps, S. C. Thomas observed saturation for SF6 absorbing CO2 laser radiation; J. R. Ackerhalt, Los Alamos; private communication.

Appl. Opt. (1)

Opt. Commun. (1)

S. L. Chin, D. K. Evans, R. D. McAlpine, F. K. McClusky, E. B. Selkirk, Opt. Commun. 31, 235 (1982); R. D. McAlpine, D. K. Evans, F. K. McClusky, J. Chem. Phys. 73, 1153 (1980); D. K. Evans, R. D. McAlpine, H. M. Adams, J. Chem. Phys. 77, 3551 (1982).
[CrossRef]

Other (1)

Recently J. R. Ackerhalt, D. O. Ham, A. V. Nowak, C. R. Phipps, S. C. Thomas observed saturation for SF6 absorbing CO2 laser radiation; J. R. Ackerhalt, Los Alamos; private communication.

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Figures (2)

Fig. 1
Fig. 1

Experimental layout for the photoacoustic measurements discussed in the text. When no Ge plate was placed in position A, the saturation effect evident in Fig. 2(A) was observed. This effect disappeared [Fig. 2(B)] when the Ge plate was used.

Fig. 2
Fig. 2

Plots of microphone voltage vs the calculated fluence for the photoacoustic measurements discussed in the text. The results in (A) were obtained without the Ge plate (Fig. 1) in place, and those in (B) were obtained when the Ge plate (Fig. 1) was used.

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