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Upconversion Emission in Er^(3+) Doped Novel Bismuthate Glass 被引量:4

Upconversion Emission in Er^(3+) Doped Novel Bismuthate Glass
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摘要 Novel Er3+-doped bismuth lead strontiam glass was fabricated and characterized, and the absorption spectrum and upconversion spectrum of the glass were studied. The Judd-Ofelt intensity parameters Ωt (t=2, 4, 6) were found to be Ω2=3.27×10-20 cm2, Ω4=1.15×10-20 cm2, and Ω6=0.38×10-20 cm2. The oscillator strength, the spontaneous transition probabilities, the fluorescence branching ratios, and excited state lifetimes were also measured and calculated. The upconversion emission intensity varies with the power of infrared excitation intensity. A plot of log Iup vs log IIR yields a straight line with slope 1.86, 1.88 and 1.85, corresponding to 525, 546, and 657 nm emission bands, respectively, which indicates that a two-photon process for the red and green emission. Novel Er3+-doped bismuth lead strontiam glass was fabricated and characterized, and the absorption spectrum and upconversion spectrum of the glass were studied. The Judd-Ofelt intensity parameters Ωt (t=2, 4, 6) were found to be Ω2=3.27×10-20 cm2, Ω4=1.15×10-20 cm2, and Ω6=0.38×10-20 cm2. The oscillator strength, the spontaneous transition probabilities, the fluorescence branching ratios, and excited state lifetimes were also measured and calculated. The upconversion emission intensity varies with the power of infrared excitation intensity. A plot of log Iup vs log IIR yields a straight line with slope 1.86, 1.88 and 1.85, corresponding to 525, 546, and 657 nm emission bands, respectively, which indicates that a two-photon process for the red and green emission.
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2005年第3期331-335,共5页 稀土学报(英文版)
基金 theNationalNaturalScienceFoundationofChina (60 2 0 70 0 6)andtheShanghaiScienceandTechnologyFoundation (0 2 2 2 610 46)
关键词 inorganic nonmetallic materials bismuth lead strontiam glass Er3+ ion spectroscopic properties Judd-Ofelt theory rare earths inorganic nonmetallic materials bismuth lead strontiam glass Er3+ ion spectroscopic properties Judd-Ofelt theory rare earths
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