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Investigation of passively synchronized dual-wavelength Q-switched lasers based on V:YAG saturable absorber

โœ Scribed by J. Janousek; P. Tidemand-Lichtenberg; J.L. Mortensen; P. Buchhave


Publisher
Elsevier Science
Year
2006
Tongue
English
Weight
414 KB
Volume
265
Category
Article
ISSN
0030-4018

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โœฆ Synopsis


In this paper the results of a theoretical and experimental investigation of synchronized passive Q-switching of two Nd:YVO 4 -based solid-state lasers operating at two different wavelengths, is described. A V:YAG saturable absorbing material was used as a passive Q-switch performing the synchronization of the two laser fields. This material provides Q-switching operation at both 1064 and 1342 nm wavelengths simultaneously, saturating the same energy level. By adjusting the pump power of both lasers, it was possible to optimize the overlap of the two pulse trains and to switch between different states of synchronization. A theoretical model based on rate equations, which has been developed in order to investigate optical performance of the laser system, is in a good agreement with the experimental results. The principle of synchronized Q-switching can lead to new, pulsed all-solid-state light sources at new wavelengths based on sum-frequency mixing processes.


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Performance of diode pumped Yb:Y2Ca3B4O1
โœ J.-L. Xu; J.-L. He; H.-T. Huang; J.-F. Yang; B.-T. Zhang; C.-Y. Tu ๐Ÿ“‚ Article ๐Ÿ“… 2010 ๐Ÿ› John Wiley and Sons ๐ŸŒ English โš– 193 KB

The diode-pumped passively Q-switched and Qswitching mode-locked Yb:Y2Ca3B4O12 lasers with V:YAG as saturable absorber are demonstrated in this paper. In the Qswitched regime, an average output power of 150 mW is obtained under the absorbed pump power of 6.6 W; the pulse width is 46 ns with the puls