Influence of local phonon energy on quantum efficiency of Tb~(3+)-Yb~(3+) co-doped glass ceramics co

来源 :Journal of Rare Earths | 被引量 : 0次 | 上传用户:veteran_eng
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The Tb3+ single-doped and Tb3+-Yb3+ co-doped glass ceramics with the precipitation of Ca F2, Ca F2-Sr F2 solid state solution and Sr F2 nanocrystals were designed and prepared by taking different amounts of Ca F2 and Sr F2 as the starting fluorides to investigate the influence of the crystalline phase on the total quantum efficiency. The formation of the fluoride nanocrystals and the incorporation of the doped rare earth ions into the fluoride nanocrystals were proved by the XRD measurement. The energy transfer from Tb3+ to Yb3+ was studied by the steady and time resolved spectra. The total internal quantum efficiencies were calculated based on the measured Tb3+ lifetime, which was about 10.5% improved in the Sr F2 nanocrystals precipitated glass ceramics compared with that in the Ca F2 nanocrystals precipitated glass ceramics mainly due to the lower phonon energy environment. Meanwhile, the total external quantum efficiencies were evaluated with the integrating sphere measurement system, which were 18.6%, 19.3% and 24.4%, respectively, for the Ca F2, Ca F2-Sr F2 and Sr F2 nanocrystals precipitated glass ceramics. Additionally, obvious difference between the calculated total internal quantum efficiency and the measured total external quantum efficiency was also discussed. The Tb3 + single-doped and Tb3 + -Yb3 + co-doped glass ceramics with the precipitation of Ca F2, Ca F2-Sr F2 solid state solution and Sr F2 nanocrystals were designed and prepared by taking different amounts of Ca F2 and Sr F2 as the starting fluorides to investigate the influence of the crystalline phase on the total quantum efficiency. The formation of the fluoride nanocrystals and the incorporation of the doped rare earth ions into the fluoride nanocrystals were proved by the XRD measurement. The energy transfer from Tb3 + to Yb3 + was studied by the steady and time resolved spectra. The total internal quantum efficiencies were calculated based on the measured Tb3 + lifetime, which was about 10.5% improved in the Sr F2 nanocrystals precipitated glass ceramics compared with that in the Ca F2 nanocrystals precipitated glass ceramics due mainly to the lower phonon energy environment. Meanwhile, the total external quantum efficiencies were evaluated with the integrating sphere measurement syst em, which were 18.6%, 19.3% and 24.4%, respectively, for the Ca F2, Ca F2-Sr F2 and Sr F2 nanocrystals precipitated glass ceramics. Additionally, obvious difference between the calculated total internal quantum efficiency and the measured total external quantum efficiency was also discussed.
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