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Energy transfer from Cr3+ to Nd3+ and NIR luminescence of Nd3+ in lead borate glasses

Autorzy
Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Energy transfer processes from Cr3+ to Nd3+ and NIR luminescence of Nd3+ ions at 1.06 žm in Cr-Nd co-doped lead borate glasses have been investigated. The spectroscopic investigation indicates that Cr3+ ions are located at strong-field and weak-field sites. Replacing PbO by PbF2 in lead borate glasses slightly influences the energy transfer processes between Cr3+ and Nd3+ and NIR luminescence of Nd3+ ions. The energy transfer process occurs in both oxide and oxyfluoride glass systems, which may be due to the thermally induced population of the 4T2 excited state of Cr3+ ions and the participation of lattice phonons.
Czasopismo
Rocznik
Strony
203--210
Opis fizyczny
Bibliogr. 15 poz.
Twórcy
autor
  • Silesian University of Technology, Department of Materials Science, Krasińskiego 8, 40-019 Katowice, Poland, Joanna.Pisarska@polsl.pl
Bibliografia
  • [1] RODRIGUEZ-MENDOZA U.R., SPEGHINI A., JAQUE D., ZAMBELLI M., BETTINELLI M., Optical propertiesof single doped Cr3+ and co-doped Cr3+-Nd3+ aluminum tantalum tellurite glasses, Journal of Alloys and Compounds 380(1–2), 2004, pp. 163–6.
  • [2] BALDA R., FERNANDEZ J., DE PABLOS A., FERNANDEZ-NAVARRO J.M., Cr3+→Nd3+ energy transfer In fluorophosphate glass investigated by time-resolved laser spectroscopy, Physical Review B:Condensed Matter 48(5), 1993, pp. 2941–8.
  • [3] ELEJALDE M.J., BALDA R., FERNANDEZ J., MACHO E., ADAM J.L., Optical properties of Cr3+ and Nd3+ in singly- and doubly-doped barium-indium-gallium-based fluoride glass investigated by time-resolved laser spectroscopy, Physical Review B: Condensed Matter 46(9), 1992, pp. 5169–82.
  • [4] QU F., DANTAS N.O., Energy transfer in Cr3+/Nd3+-codoped lead silicate glasses, Physica B 327(1), 2003, pp. 79–87.
  • [5] 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. 837–42.
  • [6] EL-HADI Z.A., Gamma ray interaction with some high-lead glasses containing chromium ions, Journal of Solid State Chemistry 163(2), 2002, pp. 351–63.
  • [7] PISARSKA J., IR transmission and emission spectra of erbium ions in fluoroindate glass, Journal of Non-Crystalline Solids 345–346, 2004, pp. 382–5.
  • [8] PONTUSCHKA W.M., KANASHIRO L.S., COURROL L.C., Luminescence mechanisms for borate glasses: the role of local structural units, Glass Physics and Chemistry 27(1), 2001, pp. 37–47.
  • [9] DOMINIAK-DZIK G., RYBA-ROMANOWSKI W., GRINBERG M., BEREGI E., KOVACS L., Excited-state relaxation dynamics of Cr3+ in YAl3(BO3 )4, Journal of Physics: Condensed Matter 14(20), 2002, pp. 5229–37.
  • [10] REDDY M.R., REDDY M.S., VEERAIAH N., Physical properties of PbO-Al2O3-B2O3 glasses moped with Cr2O3, Indian Journal of Pure and Applied Physics 44(6), 2006, pp. 446–54.
  • [11] SREEKANTH CHAKRADHAR R.P., LAKSHMANA RAO J., SIVARAMAIAH G., GOPAL N.O., Chromium ions in alkali lead borotellurite glasses – an EPR and optical study, Physica Status Solidi B 242(14), 2005, pp. 2919–29.
  • [12] KUMAR V.R., RAO J.L., GOPAL N.O., EPR and optical absorption studies of Cr3+ ions in alkaline earth alumino borate glasses, Journal of Materials Science 41(7), 2006, pp. 2045–53.
  • [13] MALYREVICH A.M., VOLK Y.V., YUMASHEV K.V., PAVLOVSKII V.K., ZAPALOVA S.S., DYMSHITS O.S., ZHILIN A.A., Absorption, emission and absorption saturation of Cr4+ ions in calcium aluminate glass, Journal of Non-Crystalline Solids 351(43–45), 2005, pp. 3551–5.
  • [14] BYKOV A.B., SHARONOV M.YU., PETRICEVIC V., POPOV I., ISAACS L.L., STEINER J., ALFANO R.R., Synthesis and characterization of Cr4+-doped CaO-GeO2-Li2O-B2O3(Al2O3) transparent glassceramics, Journal of Non-Crystalline Solids 352(52–54), 2006, pp. 5508–14.
  • [15] BOVERO E., CAVALLI E., JAQUE D., GARCIA SOLE J., SPEGHINI A., BETTINELLI M., Cr3+→Nd3+ energy transfer in the YAl3(BO3 )4 nonlinear laser crystal, Journal of Applied Physics 98(2), 2005,p. 023103.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW9-0006-0045
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