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References

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  1. E. Snitzer, Phys. Rev. Letters 7, 444 (1961).
    [Crossref]
  2. C. G. Young, Appl. Phys. Letters 2, 8 (1963).
    [Crossref]
  3. G. R. Simpson, J. Opt. Soc. Am. 52, 595 (1962).

1963 (1)

C. G. Young, Appl. Phys. Letters 2, 8 (1963).
[Crossref]

1962 (1)

G. R. Simpson, J. Opt. Soc. Am. 52, 595 (1962).

1961 (1)

E. Snitzer, Phys. Rev. Letters 7, 444 (1961).
[Crossref]

Simpson, G. R.

G. R. Simpson, J. Opt. Soc. Am. 52, 595 (1962).

Snitzer, E.

E. Snitzer, Phys. Rev. Letters 7, 444 (1961).
[Crossref]

Young, C. G.

C. G. Young, Appl. Phys. Letters 2, 8 (1963).
[Crossref]

Appl. Phys. Letters (1)

C. G. Young, Appl. Phys. Letters 2, 8 (1963).
[Crossref]

J. Opt. Soc. Am. (1)

G. R. Simpson, J. Opt. Soc. Am. 52, 595 (1962).

Phys. Rev. Letters (1)

E. Snitzer, Phys. Rev. Letters 7, 444 (1961).
[Crossref]

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Figures (3)

Fig. 1
Fig. 1

Schematic illustration of pumping and detection scheme for sun-pumped laser.

Fig. 2
Fig. 2

Sun-pumped Nd:glass laser operation at 30°C. (a) Threshold operation; time scale: 5 msec/div. (b) Approximately 10% above threshold; time scale: 5 msec/div. (c) Approximately 15% above threshold; time scale: 20 msec/div.

Fig. 3
Fig. 3

Nd:glass laser operation at 25°C when pumped by carbon arc solar-simulator. Time scale: 2 msec/div. (a) Pumping light trace showing 360-cps ripple. Laser output; pumping aperture opening: (b) ½, (c) ¾, (d) ⅞, (e) full.

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