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Energy transfer processes from Yb^(3+) to Ln^(3+) (Ln=Er or Tm) in heavy metal glasses 被引量:1
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作者 a.kos I.Czopek +3 位作者 J.Pisarska W.A.Pisarski R.Lisiecki W.Ryba-Romanowski 《Journal of Rare Earths》 SCIE EI CAS CSCD 2014年第3期273-276,共4页
Heavy metal glasses doubly doped with Yb3+ and Ln3+ ions (Ln=Er or Tm) were studied. Glass host matrices were limited to lead borate glass and lead germanate glass. Efficient resonant (yb3+-Er3+) and non-reson... Heavy metal glasses doubly doped with Yb3+ and Ln3+ ions (Ln=Er or Tm) were studied. Glass host matrices were limited to lead borate glass and lead germanate glass. Efficient resonant (yb3+-Er3+) and non-resonant (yb3+-Tm3+) energy transfer was ob- served for the studied systems. Near-infrared luminescence spectra at 1.53 μm (Er3+) and 1.9 gm (Tm3+) were detected under excita- tion of Yb3+ by 975 nm diode laser line. They corresponded to 4I13/2→4115/2 (Er3+) and 3F4→3H6 (Tm3+) transitions of rare earth ions, respectively. The unusual large spectral linewidth nearly close to 110 nm for 4I13/2→4I15/2 transition of Er3+ ions in lead borate glass was obtained, whereas long-lived near-infrared luminescence at 1.53 gm was detected in lead germanate glass. Quite different situa- tion was observed for yb3+-Tm3+ doubly doped glasses. In contrast to lead borate glass, near-infrared (3F4→3H6) luminescence spectra were registered for Tm3+ ions in lead germanate glasses, only. These phenomena strongly depended on stretching vibrations of glass host, which was confirmed by FT-IR spectroscopy. 展开更多
关键词 heavy metal glasses rare earth ions energy transfer NIR luminescence
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