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Applied Optics

Applied Optics

APPLICATIONS-CENTERED RESEARCH IN OPTICS

  • Vol. 32, Iss. 30 — Oct. 20, 1993
  • pp: 5952–5957

1079.5- and 1341.4-nm: larger energy from a dual-wavelength Nd:YAlO3 pulsed laser

H. Y. Shen, W. X. Lin, R. R. Zeng, Y. P. Zhou, G. F. Yu, C. H. Huang, Z. D. Zeng, W. J. Zhang, R. F. Wu, and Q. J. Ye  »View Author Affiliations


Applied Optics, Vol. 32, Issue 30, pp. 5952-5957 (1993)
http://dx.doi.org/10.1364/AO.32.005952


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Abstract

On the basis of oscillation conditions of simultaneous multiple-wavelength lasing that we have established, a larger-energy (1079.5 and 1341.4 nm) dual-wavelength Nd:YAlO3 pulsed laser has been developed. Output energies of 3.71 and 1.39 J with efficiencies of 1.29% and 0.48% for the 1341.4- and 1079.5-nm wavelengths, respectively, have been achieved. To our knowledge, this is the best result among simultaneous dual-wavelength solid-state lasers to date. The temporal and spatial distributions of these beams obtained from a free-running dual-wavelength Nd:YAlO3 pulsed laser have also been measured. Experimental results show that the temporal and spatial overlap of the two beams is quite good for this type of laser.

© 1993 Optical Society of America

History
Original Manuscript: May 15, 1992
Published: October 20, 1993

Citation
H. Y. Shen, W. X. Lin, R. R. Zeng, Y. P. Zhou, G. F. Yu, C. H. Huang, Z. D. Zeng, W. J. Zhang, R. F. Wu, and Q. J. Ye, "1079.5- and 1341.4-nm: larger energy from a dual-wavelength Nd:YAlO3 pulsed laser," Appl. Opt. 32, 5952-5957 (1993)
http://www.opticsinfobase.org/ao/abstract.cfm?URI=ao-32-30-5952

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