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References

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  1. L. F. Johnson, J. Appl. Phys. 33, 756 (1962); L. F. Johnson and R. R. Soden, ibid., p. 757; L. F. Johnson, G. D. Boyd, K. Nassau, and R. R. Soden, Proc. IRE 50, 213 (1962).
    [Crossref]
  2. E. Snitzer, Phys. Rev. Letters 7, 444 (1961); C. G. Young, Appl. Phys. Letters 2, 151 (1963).
    [Crossref]

1962 (1)

L. F. Johnson, J. Appl. Phys. 33, 756 (1962); L. F. Johnson and R. R. Soden, ibid., p. 757; L. F. Johnson, G. D. Boyd, K. Nassau, and R. R. Soden, Proc. IRE 50, 213 (1962).
[Crossref]

1961 (1)

E. Snitzer, Phys. Rev. Letters 7, 444 (1961); C. G. Young, Appl. Phys. Letters 2, 151 (1963).
[Crossref]

Johnson, L. F.

L. F. Johnson, J. Appl. Phys. 33, 756 (1962); L. F. Johnson and R. R. Soden, ibid., p. 757; L. F. Johnson, G. D. Boyd, K. Nassau, and R. R. Soden, Proc. IRE 50, 213 (1962).
[Crossref]

Snitzer, E.

E. Snitzer, Phys. Rev. Letters 7, 444 (1961); C. G. Young, Appl. Phys. Letters 2, 151 (1963).
[Crossref]

J. Appl. Phys. (1)

L. F. Johnson, J. Appl. Phys. 33, 756 (1962); L. F. Johnson and R. R. Soden, ibid., p. 757; L. F. Johnson, G. D. Boyd, K. Nassau, and R. R. Soden, Proc. IRE 50, 213 (1962).
[Crossref]

Phys. Rev. Letters (1)

E. Snitzer, Phys. Rev. Letters 7, 444 (1961); C. G. Young, Appl. Phys. Letters 2, 151 (1963).
[Crossref]

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Figures (3)

Fig. 1
Fig. 1

Laser output pulse from 2% Nd3+ glass (200 µsec/div). The excitation energy was 900 J.

Fig. 2
Fig. 2

(a) Near-field pattern of 0.5% Nd3+ glass input power; 1100 J. (b) Photograph of cross section of Nd3+ glass, taken by the Schlieren method.

Fig. 3
Fig. 3

(a) Near-field pattern of 2% Nd3+ glass input power; 450 J. (b) Near-field pattern of 2% Nd3+ glass input power; 900 J. (c) Photograph of cross section of Nd3+ glass, taken by the Schlieren method.