Spectroscopic analysis of Pr3+:Gd3Ga5O12 crystal as visible laser material
โ Scribed by G.X. Cai; M. Zhou; Z. Liu; Z.Q. Luo; Y.K. Bu; H.Y. Xu; Z.P. Cai; C.C. Ye
- Publisher
- Elsevier Science
- Year
- 2010
- Tongue
- English
- Weight
- 396 KB
- Volume
- 33
- Category
- Article
- ISSN
- 0925-3467
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โฆ Synopsis
Pr 3+ -doped Gd 3 Ga 5 O 12 single crystal is potentially good for generations of new lasers at visible range. The absorption and emission spectra of this crystal were measured at room temperature, as well as its fluorescence decay curves. Standard and modified Judd-Ofelt theories were used to analyze its intensity parameters, and the fluorescence properties for the 3 P 0 emitting multiplet were predicted. To characterize the existence of the 3 P 0 ? 3 F 3 and 3 P 0 ? 3 H 5 transitions, which violate the selection rules of electric dipole transition, we also introduced the experimental branching ratio to reflect practical portion of transitions from 3 P 0 multiplet. The stimulated emission cross sections of the promising laser transitions were then calculated and compared with other crystals which had realized efficient visible laser emissions. By analysing the spectroscopic properties we have showed that the Pr:GGG is an excellent candidate for solid state laser materials.
๐ SIMILAR VOLUMES
Shaped single crystals of Bi:Gd 3 Ga 5 O 12 (Bi=0.102, 0.126 and 0.141%) were grown by the modified micro-pullingdown method. Strong evaporation of Bi during single crystal growth leading to lower concentration in the obtained crystals was detected. Measured optical absorption spectra show an absorp
Nanoscaled Nd:Gd 3 Ga 5 O 12 (Nd:GGG) polycrystalline material was prepared with Ga and Gd 2 O 3 successfully at a lower sintering temperature (800 โข C) and shorter holding time (6 h). The process of co-precipitation synthesis and sintering were described in detail. The thermal behavior of the Nd:GG