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1. 中国科学院长春光学精密机械与物理研究所激发态物理重点实验室,吉林 长春,130033
2. 吉林大学物理学院相干光与原子分子光谱教育部重点实验室,吉林 长春,130023
收稿日期:2003-12-16,
修回日期:2004-04-28,
纸质出版日期:2004-09-20
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方爱平, 戴振文, 杨海贵, 孙桂娟, 王立军, 蒋占魁. Yb<sup>3+</sup>:Pr<sup>3+</sup>:ZBLAN光纤中4f5d上转换激发的理论研究[J]. 发光学报, 2004,(5): 487-494
FANG Ai-ping, DAI Zhen-wen, YANG Hai-gui, SUN Gui-juan, WANG Li-jun, JIANG Zhan-kui. Theoretical Study of 4f5d Upconversion Excitation in Yb<sup>3+</sup>:Pr<sup>3+</sup>:ZBLAN Fiber[J]. Chinese Journal of Luminescence, 2004,(5): 487-494
方爱平, 戴振文, 杨海贵, 孙桂娟, 王立军, 蒋占魁. Yb<sup>3+</sup>:Pr<sup>3+</sup>:ZBLAN光纤中4f5d上转换激发的理论研究[J]. 发光学报, 2004,(5): 487-494 DOI:
FANG Ai-ping, DAI Zhen-wen, YANG Hai-gui, SUN Gui-juan, WANG Li-jun, JIANG Zhan-kui. Theoretical Study of 4f5d Upconversion Excitation in Yb<sup>3+</sup>:Pr<sup>3+</sup>:ZBLAN Fiber[J]. Chinese Journal of Luminescence, 2004,(5): 487-494 DOI:
利用粒子数速率方程和相关的辐射跃迁理论
计算了Yb
3+
:Pr
3+
:ZBLAN光纤中Pr
3+
离子4f5d能级两步上转换激发的动力学过程.得到不同Pr
3+
掺杂浓度下
激发光的光谱强度和粒子数密度的纵向分布和有效光纤长度随激发光的光谱强度的变化关系.另外
还得到了4f5d荧光强度与入射光强、光纤长度和Pr
3+
掺杂浓度的关系
给出了激发效率与激发光的光谱强度和Pr
3+
掺杂浓度的关系.
With quite broad ultraviolet (UV) absorption and emission spectra
the 4f
N-1
5d energy levels of trivalent rare earth ions doped in hosts are possible and perfect upper laser levels for tunable UV laser.In order to obtain upconversion UV laser based on 5d levels
it is necessary and interesting to investigate the excitation behaviors of 5d levels by upconversion pump.In this paper
a theoretical study for the kinetics of frequency upconversion excitation of Pr
3+
4f5d level in Yb
3+
:Pr
3+
:ZBLAN fiber is performed by using the population rate equations and related transition theories.Yb
3+
ions pumped by the first pump beam (
1
=980 nm) sensitize the excitation of Pr
3+
3
P
0
level through the energy transfer processes and the second pump beam (
2
=329 nm) realizes Pr
3+
4f5d excitation from
3
P
0
.The distributions of the pump beam intensities and the normalized population densities along the fiber
the effective fiber lengths under different pump intensities and Pr
3+
concentrations are calculated.The dependence of 4f5d fluorescence intensity on the incident intensity
fiber length and Pr
3+
concentration are discussed.Pumping efficiency as a function of the pump intensity and Pr
3+
concentration is also given.The calculated results show that the intensity of both
1
and
2
linearly decrease along the fiber and this decrease becomes fast with increasing Pr
3+
concentration.Under the pump intensities assumed here the 4f5d population density does not change in the whole pumped region (i.e.
the effective fiber length) where both pump beams exist.This means the 4f5d excitation under the used pump intensities is saturated.The effective fiber length is in proportion to the pump intensity and in inverse proportion to dopant concentration.It is found that higher dopant concentration is favorable to get large 4f5d fluorescent intensity.The pump efficiency increases with the concentration and pump intensities
but the saturation effect will occur when the pump intensities are too large.The results indicate that the upconversion excitation of Pr
3+
4f5d in Yb
3+
:Pr
3+
:ZBLAN fiber can be effectively achieved by pump of the two beams.The calculated results may be helpful to further theoretical or experimental study of upconversion UV laser based on 5d levels in rare earth doped optical fibers or bulk hosts.
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