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Tm(0.1)Yb(5):FOV纳米相氟氧化物玻璃陶瓷的紫外和可见上转换发光 被引量:1
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作者 陈晓波 宋增福 +9 位作者 吴瑾光 N. Sawanobori m. ohtsuka 李永良 周静 王策 刘金英 田强 孙萍 景红梅 《中国科学(G辑)》 CSCD 2008年第7期817-824,共8页
研究了在975nm半导体激光激发下纳米相氟氧化物玻璃陶瓷Tm(0.1)Yb(5):FOV里Yb3+敏化Tm3+的紫外和可见上转换发光.发现了位于363.6nm的一条紫外上转换发光线,它是Tm3+离子的1D2→3H6的荧光跃迁.还发现了位于450.7nm,(477.0,462.5nm),648.... 研究了在975nm半导体激光激发下纳米相氟氧化物玻璃陶瓷Tm(0.1)Yb(5):FOV里Yb3+敏化Tm3+的紫外和可见上转换发光.发现了位于363.6nm的一条紫外上转换发光线,它是Tm3+离子的1D2→3H6的荧光跃迁.还发现了位于450.7nm,(477.0,462.5nm),648.5nm,(680.5,699.5nm)和(777.2,800.7nm)的几条上转换发光线,它们是Tm3+离子的1D2→3F4,1G4→3H6,1G4→3F4,3F3→3H6和3H4→3H6的荧光跃迁.通过对上转换发光强度F随975nm抽运激光功率P改变详细地测量和分析证实了1D2能级的上转换发光部分是五光子上转换发光,而1G4能级和3H4能级的上转换发光则是三光子和双光子上转换发光.初步的理论分析建议1D2能级的上转换发光机理部分是Tm3+离子之间{3H4(Tm3+)→3F4(Tm3+),1G4(Tm3+)→1D2(Tm3+)}和{1G4(Tm3+)→3F4(Tm3+),3H4(Tm3+)→1D2(Tm3+)}的交叉能量传递.而1G4能级和3H4能级的上转换发光机理则是Yb3+离子到Tm3+离子的{2F5/2(Yb3+)→2F7/2(Yb3+),3H4(Tm3+)→1G4(Tm3+)}和{2F5/2(Yb3+)→2F7/2(Yb3+),3F4(Tm3+)→3F2(Tm3+)}的相继的能量传递。 展开更多
关键词 上转换发光 紫外 纳米相氟氧化物 玻璃陶瓷 饱和 Tm^3+离子 Yb^3+离子 能量传递
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Ultraviolet and visible upconversion luminescence of Tm(0.1)Yb(5):FOV oxyfluoride nanophase vitroceramics 被引量:3
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作者 N. SAWANOBOI m. ohtsuka 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2008年第12期1868-1876,共9页
The ultraviolet upconversion luminescence of Tm3+ ions sensitized by Yb3+ ions in oxyfluoride nanophase vitroceramics when excited by a 975 nm diode laser was studied. An ultraviolet upconversion luminescence line pos... The ultraviolet upconversion luminescence of Tm3+ ions sensitized by Yb3+ ions in oxyfluoride nanophase vitroceramics when excited by a 975 nm diode laser was studied. An ultraviolet upconversion luminescence line positioned at 363.6 nm was found. It was attributed to the fluorescence transition of 1D2→3H6 of Tm3+ ion. Sev- eral visible upconversion luminescence lines at 450.7 nm, (477.0 nm, 462.5 nm), 648.5 nm, (680.5 nm, 699.5 nm) and (777.2 nm, 800.7 nm) were also found, which result respectively from the fluorescence transitions of 1D2→3F4, 1G4→3H6, 1G4→3F4, 3F3→3H6 and 3H4→3H6 of Tm3+ ion. The careful measurement and analysis of the variation of upconversion luminescence intensity F as a function of the 975 nm pumping laser power P prove that the upconversion luminescence of 1D2 state is partly a five-photon upconversion luminescence, and the upconversion lumines- cence of 1G4 state and 3H4 state are respectively the three-photon and two-photon upconversion luminescence. The theoretical analysis suggested that the upcon- version mechanism of the 363.6 nm 1D2→3H6 upconversion luminescence is partly the cross energy transfer of {3H4(Tm3+)→3F4(Tm3+), 1G4(Tm3+)→1D2(Tm3+)} and {1G4(Tm3+)→3F4(Tm3+), 3H4(Tm3+)→1D2(Tm3+)} between Tm3+ ions. In addition, the upconversion luminescence of 1G4 and 3H4 state results respectively from the se- quential energy transfer {2F5/2(Yb3+)→2F7/2(Yb3+), 3H4(Tm3+)→1G4(Tm3+)} and {2F5/2(Yb3+) →2F7/2(Yb3+), 3F4(Tm3+)→3F2(Tm3+)} from Yb3+ ions to Tm3+ ions. 展开更多
关键词 UPCONVERSION luminescence ultraviolet OXYFLUORIDE NANOPHASE vitroceramics saturation Tm3+ ION YB3+ ION energy transfer
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