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Judd-Ofelt parameters of the up-conversion phosphors: Er3+ doped BaGd2ZnO5/PMMA and NaYF4/PMMA 被引量:1

Judd-Ofelt parameters of the up-conversion phosphors: Er^(3+) doped BaGd_2ZnO_5/PMMA and NaYF_4/PMMA
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摘要 We proposed a new approach to determination of Judd-Ofelt intensity parameters of Er^(3+) doped phosphors via their absorption spectra. To validate this approach, JO parameters of Er^(3+) doped Ba BaGd_2ZnO_5/PMMA and NaYF_4/PMMA composites were calculated and in a good agreement with the other glass and crystal. The spontaneous radiative transition probability, branching ratio, and radiative lifetime of the optical transitions were calculated by using the Judd-Ofelt theory. Intense near-infrared emission at 1553 nm was observed under 980 nm laser diode excitation at room temperature. The samples possessing high full-width at half-maximum reach 85 nm have potential application in broadband optical amplifier. We proposed a new approach to determination of Judd-Ofelt intensity parameters of Er^(3+) doped phosphors via their absorption spectra. To validate this approach, JO parameters of Er^(3+) doped Ba BaGd_2ZnO_5/PMMA and NaYF_4/PMMA composites were calculated and in a good agreement with the other glass and crystal. The spontaneous radiative transition probability, branching ratio, and radiative lifetime of the optical transitions were calculated by using the Judd-Ofelt theory. Intense near-infrared emission at 1553 nm was observed under 980 nm laser diode excitation at room temperature. The samples possessing high full-width at half-maximum reach 85 nm have potential application in broadband optical amplifier.
出处 《Journal of Rare Earths》 SCIE EI CAS CSCD 2017年第10期964-969,共6页 稀土学报(英文版)
基金 supported by the National Natural Science Foundation of China(11474083) Department of Education Fund of Hebei Province(ZD2014069) Natural Science Fund of Hebei Province(A2015201192)
关键词 Judd-Ofelt intensity parameters PMMA absorption cross sections near-infrared rare earths Judd-Ofelt intensity parameters PMMA absorption cross sections near-infrared rare earths
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