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ISSN: 1023-5086

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ISSN: 1023-5086

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Opticheskii Zhurnal

A full-text English translation of the journal is published by Optica Publishing Group under the title “Journal of Optical Technology”

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Compact efficient Cr:YAG passively Q-switched c-cut Nd:YVO4 self-Raman laser

For Russian citation (Opticheskii Zhurnal):

H. Y. Lin, X. H. Huang, D. Sun, Y. C. Xu, M. Xiao, W. Z. Zhu Compact efficient Cr:YAG passively Q-switched c-cut Nd:YVO4 self-Raman laser (Эффективный компактный лазер на основе Nd:YVO4 с-среза с модуляцией добротности пассивным затвором из Сr:YAG и рамановским самопреобразованием излучения) [на англ. яз.] // Оптический журнал. 2016. Т. 83. № 10. С. 12–15.

 

H. Y. Lin, X. H. Huang, D. Sun, Y. C. Xu, M. Xiao, W. Z. Zhu Compact efficient Cr:YAG passively Q-switched c-cut Nd:YVO4 self-Raman laser (Эффективный компактный лазер на основе Nd:YVO4 с-среза с модуляцией добротности пассивным затвором из Сr:YAG и рамановским самопреобразованием излучения) [in English] // Opticheskii Zhurnal. 2016. V. 83. № 10. P. 12–15.

For citation (Journal of Optical Technology):

H. Y. Lin, X. H. Huang, D. Sun, Y. C. Xu, M. Xiao, and W. Z. Zhu, "Compact efficient Cr:YAG passively Q-switched c-cut Nd:YVO4 self-Raman laser," Journal of Optical Technology. 83(10), 590-592 (2016). https://doi.org/10.1364/JOT.83.000590

Abstract:

A passively Q-switched self-Raman laser emitting at 1178 nm is demonstrated with a c-cut Nd:YVO4 crystal, using a Cr:YAG crystal as a saturable absorber. At a pump power of 5.0 W the maximum average output power of 540 mW is obtained, corresponding to an optical-to-optical conversion efficiency of 10.8%. Pulse duration of 10.8 ns, pulse-repetition rate of 42.5 kHz, and energy per pulse of 12.7 μJ are achieved when the pump power is 5.0 W. Interestingly, the second-Stokes component at 1316 nm appears when the pump power reaches 4.0 W.

Keywords:

a passively Q-switched self-Raman laser, Nd:YVO4 crystal, laser diode, the pump beam, antireflection coating, radius-of-curvature concave mirror

Acknowledgements:

This paper is supported by the Natural Science Foundation of Fujian Province of China (2016J01683 and 2012J01025) and Scientific Research Fund of Fujian Provincial Education Department of China (JA15387 and JA12249).

OCIS codes: 140.3480, 140.3550, 140.3538

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