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Thermal and radiative characteristics of oxyfluoride glass singly doped with lanthanide ions
作者姓名:Barbara  Gra[z]yna  DOMINIAK-DZIK  RYBA-ROMANOWSKI
作者单位:[1]Department of Physics,Opole University of Technology.ul.Mikolajczyka 5,45-271 Opole,Poland [2]z,Opole University of Technology.ul.Mikolajczyka 5,45-271 Opole,Poland
摘    要:Rare earths-doped oxyfluoride glasses based on germanium oxide and lead fluoride were prepared from commercial raw materials. The glasses with general composition of 50GeO2-(50-x-y)PbO-yPbF2-xLnF3 (Ln=Pr3+-Yb3+), contained different concentrations of optically active dopants (x=0.2 mol.% and 2 mol.%) and PbF2 (y≤15 mol.%). The differential thermal analysis (DTA) was used to determine both thermal characteristic and thermal stability properties of the glasses in the function of the kind of dopant, its concentration, and a glass composition. Characteristic glass temperatures such as glass transition temperature (Tg), glass crystallization temperature (Tc) and temperature corresponding to the maximum of the crystallization rate (Tpc) were evaluated. On the basis of obtained results, the thermal stabilities of glasses under study were evaluated using various thermal stability criteria (Dietzel factor ?T, Saad-Poulain factors H' and S). It was found that the increase in rare earth fluoride contents influenced thermal characteristics when the characteristic temperatures of the individual glass was shifted towards higher values. The effect of the PbF2 content and the kind of rare earth impurity on the glass stability was observed. Absorption spectra of lanthanide-doped glasses were measured at room temperature and used to determine the phenomenological intensity parameters Ωt and next, to estimate radiative properties of lanthanide ions in this matrix. Radiative transition probabilities of luminescent states of Ln3+, branching ratios and radiative lifetimes were determined. The variation of the Ωt along the lanthanide series was presented and discussed.

关 键 词:lanthanide  ions  oxyfluoride  glass  thermal  stability  differential  thermal  analysis  glass  transition  temperature  crystallization  temperature  transition  probabilities  thermal  characteristics  rare  earth  radiative  properties  intensity  parameters  room  temperature  individual  kind  function  spectra  results  factors  active  study
收稿时间:31 August 2010

Thermal and radiative characteristics of oxyfluoride glass singly doped with lanthanide ions
Barbara,Grazyna,DOMINIAK-DZIK,RYBA-ROMANOWSKI.Thermal and radiative characteristics of oxyfluoride glass singly doped with lanthanide ions[J].Journal of Rare Earths,2010,28(6):893-898.
Authors:Journal of Rare Earths
Affiliation:1. Department of Physics, Opole University of Technology, ul. Mikolajczyka 5, 45-271 Opole, Poland;2. Institute of Low Temperature and Structure Research, Polish Academy of Sciences, ul. Okólna 2, 50-395 Wroclaw, Poland
Abstract:Rare earths-doped oxyfluoride glasses based on germanium oxide and lead fluoride were prepared from commercial raw materials. The glasses with general composition of 50GeO2-(50-x-y)PbO-yPbF2-xLnF3 (Ln=Pr3+-Yb3+), contained different concentrations of optically active dopants (x=0.2 mol.% and 2 mol.%) and PbF2 (y=15 mol.%). The differential thermal analysis (DTA) was used to determine both thermal characteristic and thermal stability properties of the glasses in the function of the kind of dopant, its concentration, and a glass composition. Characteristic glass temperatures such as glass transition temperature (Tg), glass crystallization temperature (Tc) and temperature corresponding to the maximum of the crystallization rate (Tpc) were evaluated. On the basis of obtained results, the thermal stabilities of glasses under study were evaluated using various thermal stability criteria (Dietzel factor ?T, Saad-Poulain factors H' and S). It was found that the increase in rare earth fluoride contents influenced thermal characteristics when the characteristic temperatures of the individual glass was shifted towards higher values. The effect of the PbF2 content and the kind of rare earth impurity on the glass stability was observed. Absorption spectra of lanthanide-doped glasses were measured at room temperature and used to determine the phenomenological intensity parameters Ot and next, to estimate radiative properties of lanthanide ions in this matrix. Radiative transition probabilities of luminescent states of Ln3+, branching ratios and radiative lifetimes were determined. The variation of the Ot along the lanthanide series was presented and discussed.
Keywords:oxyfluoride glasses    rare earths    DTA    thermal stability of glasses    radiative transition probabilities    radiative lifetimes
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