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Laser Performance and Material Properties of a High Temperature Plastic Doped with Pyrromethene-BF2 Dyes

Published online by Cambridge University Press:  15 February 2011

Toomas H. Allik
Affiliation:
Science Applications International Corporation, 1710 Goodridge Drive, McLean, VA 22102
Suresh Chandra
Affiliation:
Science Applications International Corporation, 1710 Goodridge Drive, McLean, VA 22102
Timothy R. Robinson
Affiliation:
Korry Electronics Co., 901 Dexter Avenue North, Seattle, WA 98109
J. Andrew Hutchinson
Affiliation:
Night Vision & Electronic Sensors Directorate, Lasers and Photonics Division, Fort Belvoir, VA 22060–5806
Govindarao Sathyamoorthi
Affiliation:
University of New Orleans, Department of Chemistry, New Orleans, LA 70148
Joseph H. Boyer
Affiliation:
University of New Orleans, Department of Chemistry, New Orleans, LA 70148
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Abstract

Four pyrromethene-BF2 visible laser dyes, dissolved in a MIL-STD tested high temperature polymer matrix and pumped with a doubled Nd:YAG laser produced 61 % slope efficiency and retained 78% of the initial lasing efficiency after 95,000 pulses.

Type
Research Article
Copyright
Copyright © Materials Research Society 1994

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References

[1] Hermes, R.E., Allik, T.H., Chandra, S., and Hutchinson, J.A., Appl. Phys. Lett. 63, 877 (1993).Google Scholar
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[3] Dunn, B. et. al., “Advances in dye-doped sol-gel lasers,” Materials Research Society 1993 Fall Meeting, December 1, 1993, paper R11. 1.Google Scholar
[4] Allik, T.H., Chandra, S., and Hutchinson, J.A., ”Lifetime measurements of new pyrromethene solid state dye lasers,” in Bulletin of the American Physical Society, Series II, Vol.38, No. 8, October 1993, paper MN4, p. 1717.Google Scholar
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