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Influence of PbX2 (X = F, Cl, Br) content and thermal treatment on structure and optical properties of lead borate glasses doped with rare earth ions

Wybrane pełne teksty z tego czasopisma
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Języki publikacji
EN
Abstrakty
EN
Oxyhalide lead borate glasses doped with rare earth ions have been studied before and after thermal treatment. The rare earths as optically active ions were limited to the Er3+ ions. Near-infrared luminescence due to the main 4I13/2–4I15/2 laser transition of Er3+ was registered. The introduction of PbX2 to the borate glass results in a reduction of spectral linewidth and an increase of luminescence lifetime of 4I13/2 state of Er3+ ions. The unusual large spectral linewidth for 4I13/2–4I15/2 transition of Er3+ in the oxide glass host was obtained, whereas the luminescence decay from 4I13/2 state is longer for a sample with PbF2 than PbCl2 and PbBr2. Heat treatment introduces transformation from a glass to transparent glass-ceramic (TGC). The coordination sphere around Er3+ ions is changed, giving important contribution to the luminescence characteristics. The spectroscopic consequence of this transformation is the increase of luminescence lifetime and the narrowing of spectral lines of Er3+.
Czasopismo
Rocznik
Strony
351--358
Opis fizyczny
Bibliogr. 17 poz.
Twórcy
autor
autor
autor
autor
  • University of Silesia, Institute of Chemistry, Szkolna 9, 40-007 Katowice, Poland
Bibliografia
  • [1] GRESSLER C.A., SHELBY J.E., Lead fluoroborate glasses, Journal of Applied Physics 64(9), 1988, pp. 4450.4453.
  • [2] GRESSLER C.A., SHELBY J.E., Properties and structure of PbO-PbF2-B2O3 glasses, Journal of Applied Physics 66(3), 1989, pp. 1127.1131.
  • [3] TAWANSI A., GOHAR I.A., HOLLAND D., EL-SHISHTAWI N.A., Some physical properties of lead borate glasses. I. Influences of heat treatment and PbO content, Journal of Physics D: Applied Physics 21(4), 1988, pp. 607.613.
  • [4] TAWANSI A., AHMED E., EL-SHISHTAWI N.A., Some physical properties of lead borate glasses.II. A compensation model for the transition region, Journal of Physics D: Applied Physics 21(4),
  • [5] HAGER I.Z., Optical properties of lithium barium haloborate glasses, Journal of Physics and Chemistry of Solids 70(1), 2009, pp. 210.217.
  • [6] YONG DING, SHIBIN JIANG, BOR-CHYUAN HWANG, TAO LUO, NASSER PEYGHAMBARIAN, YUSUKE HIMEI,TOMOKO ITO, YOSHINARI MIURA, Spectral properties of erbium-doped lead halotellurite glasses for 1.5 �Ę m broadband amplification, Optical Materials 15(2), 2000, pp. 123.130.
  • [7] PISARSKA J., RYBA-ROMANOWSKI W., DOMINIAK-DZIK G., GORYCZKA T., PISARSKI W.A., Near--infrared luminescence of rare earth ions in oxyfluoride lead borate glasses and transparent glass-ceramic materials, Optica Applicata 38(1), 2008, pp. 211.216.
  • [8] PISARSKI W.A., PISARSKA J., LISIECKI R., GROBELNY .., DOMINIAK-DZIK G., RYBA-ROMANOWSKI W.,Erbium-doped oxide and oxyhalide lead borate glasses for near-infrared broadband optical amplifiers, Chemical Physics Letters 472(4.6), 2009, pp. 217.219.
  • [9] PISARSKI W.A., DOMINIAK-DZIK G., RYBA-ROMANOWSKI W., PISARSKA J., Role of PbO substitution by PbF2 on structural behavior and luminescence of rare earth-doped lead borate glass, Journal of Alloys and Compounds 451(1.2), 2008, pp. 220.222.
  • [10] PISARSKI W.A., GORYCZKA T., PISARSKA J., DOMINIAK-DZIK G., RYBA-ROMANOWSKI W., Effect of heat treatment on Er3+ containing multicomponent oxyfluoride lead borate glass system, Journal of Non-Crystalline Solids 354(2.9), 2008, pp. 492.496.
  • [11] MORTIER M., Between glass and crystal: glass-ceramics, a new way for optical materials,Philosophical Magazine B 82(6), 2002, pp. 745.753.
  • [12] RYBA-ROMANOWSKI W., DOMINIAK-DZIK G., SOLARZ P., KLIMESZ B., .ELECHOWER M., Effect of thermal treatment on luminescence and VUV-to-visible conversion in oxyfluoride glass singly doped with praseodymium and thulium, Journal of Non-Crystalline Solids 345.346, 2004, pp. 391.395.
  • [13] KLIMESZ B., DOMINIAK-DZIK G., SOLARZ P., .ELECHOWER M., RYBA-ROMANOWSKI W., Pr3+ and Tm3+ containing transparent glass ceramics in the GeO2.PbO.PbF2.LnF3 system, Journal of Alloys and Compounds 382(1.2), 2004, pp. 292.299.
  • [14] KASHCHIEVA E.P., IVANOVA V.D., JIVOV B.T., DIMITRIEV Y.B., Nanostructured borate glass ceramics containing PbMoO4, Physics and Chemistry of Glasses 41(6), 2000, pp. 355.357.
  • [15] AUZEL F., Upconversion and anti-Stokes processes with f and d ions in solids, Chemical Reviews 104(1), 2004, pp. 139.174.
  • [16] ZHENGANG SHANG, GUOZHONG REN, QIBIN YANG, CHANGFU XU, YUNXIN LIU, YONG ZHANG, QUN WU,Spectroscopic properties of Er3+-doped and Er3+/Yb3+-codoped PbF2.MOx (M = Te, Ge, B) oxyfluoride glasses, Journal of Alloys and Compounds 460(1.2), 2008, pp. 539.543.
  • [17] PISARSKA J., RYBA-ROMANOWSKI W., DOMINIAK-DZIK G., GORYCZKA T., PISARSKI W.A., Energy transfer from Yb to X (X = Tm, Er) in lead borate glasses, Optica Applicata 35(4), 2005, pp. 837.842.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW7-0012-0155
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