中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
808 nm 抽运的Ho3+,Tm3+及Er3+掺杂的氟磷酸盐玻璃的2.0 μm 光谱性质研究

文献类型:期刊论文

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作者衣丽霞 ; 王孟 ; 张丽艳 ; 汪国年 ; 胡丽丽 ; 张军杰
刊名光子学报
出版日期2008
卷号37期号:s1页码:22
关键词Cross relaxations Doped fluorophosphate glass Emission cross sections Er3+ Fluorophosphate glasses Gain coefficients Ho3+ J-o theories Potential materials Rare earth ions Spectroscopic properties Spontaneous transition probabilities Tm3+ Transfer mechanisms
ISSN号1004-4213
其他题名2.0 μm spectroscopic properties of Ho3+, Tm3+ and Er3+ doped fluorophosphate glasses pumped by 808 nm
中文摘要2.0 μm spectroscopic properties of Er3+/Tm3+/Ho3+ triply-doped fluorophosphate glasses pumped by 808 nm and the energy transfer mechanisms between the three rare earth ions were investigated. J-O theory was used to calculate the parameters of Ho3+ in fluorophosphate glasses. Absorption and emission cross-sections and the gain coefficients were calculated. The obtained lifetime r and spontaneous transition probability Ar of Ho3+:5I7 level were 10.64 ms and 93.95 s-1 respectively. The calculated maximum emission cross-section of 2.0 μm was 9.26×10-21 cm2. The energy transfer analysis indicated that the cross-relaxation of Tm3+ was important and the resonent energy transfer in Er3+&rarrHo3+, Tm3+&rarrHo3+, Er3+&rarrTm3+&rarrHo3+ process was the main channel. The study revealed that the Er3+/Tm3+/Ho3+ triply-doped fluorophosphate glass would be a potential material for 2.0 μm emission because of the efficient sensitization of Er3+ and Tm3+ to Ho3+.
学科主题光学材料;光学玻璃
收录类别EI
语种中文
公开日期2009-09-24
源URL[http://ir.siom.ac.cn/handle/181231/5033]  
专题上海光学精密机械研究所_高功率激光单元技术研发中心
推荐引用方式
GB/T 7714
衣丽霞,王孟,张丽艳,等. 808 nm 抽运的Ho3+,Tm3+及Er3+掺杂的氟磷酸盐玻璃的2.0 μm 光谱性质研究, 2.0 μm spectroscopic properties of Ho3+, Tm3+ and Er3+ doped fluorophosphate glasses pumped by 808 nm[J]. 光子学报,2008,37(s1):22, 25.
APA 衣丽霞,王孟,张丽艳,汪国年,胡丽丽,&张军杰.(2008).808 nm 抽运的Ho3+,Tm3+及Er3+掺杂的氟磷酸盐玻璃的2.0 μm 光谱性质研究.光子学报,37(s1),22.
MLA 衣丽霞,et al."808 nm 抽运的Ho3+,Tm3+及Er3+掺杂的氟磷酸盐玻璃的2.0 μm 光谱性质研究".光子学报 37.s1(2008):22.

入库方式: OAI收割

来源:上海光学精密机械研究所

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