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The effect of Ca~(2+), Mg~(2+), and Zn~(2+) on optical properties of Er~(3+) doped silicate glass

机译:Ca〜(2 +),Mg〜(2+)和Zn〜(2+)对掺Er〜(3+)硅酸盐玻璃光学性能的影响

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To investigate the effect of divalent cations, we melted a set of sodium silicate baseline glasses with different concentrations of Ca~(2+), Mg~(2+), and Zn~(2+). We doped each of these basic glass matrices with several different amounts of Er~(3+) cations. These samples have been characterized in terms of absorption spectra, luminescence spectra, and experimental lifetime of the erbium metastable state. We also fabricated planar waveguides using Ag~+/Na~+ ion-exchange process. Characteristic parameters of the waveguides such as the number of modes, the refractive index change, the depth of the diffused region, and the propagation loses were measured. The mutual replacements of the divalent cations influenced the electron donor power (basicity) of oxygen atoms coordinating metal ions in glass. Measured optical spectra, lifetime values, and waveguiding parameters reflected the changes in glass basicity. To quantify the individual effects of Ca~(2+), Mg~(2+), and Zn~(2+), we calculated composition-property models based on polynomial functions with multiple variables. Correlation coefficients R~2 varied from 0.991 to 1.000 indicating good linear correlations between the parameters and composition. The evaluation of glass component effects on the studied parameters enabled us quantify the chemical influence of the divalent cations. We discussed this influence using the optical basicity theory that predicts the variations of the electron donor power of oxygen atoms with glass composition. The knowledge of component effects is very useful for the effective formulation of new glass compositions. New Er glasses containing Zn~(2+) and/ or Mg~(2+) as divalent cations are promising materials for optical waveguide amplifiers.
机译:为了研究二价阳离子的作用,我们熔化了一组不同浓度的Ca〜(2 +),Mg〜(2+)和Zn〜(2+)的硅酸钠基线玻璃。我们用几种不同数量的Er〜(3+)阳离子掺杂了这些基本玻璃基质。这些样品的特征在于吸收光谱,发光光谱和meta稳态的实验寿命。我们还使用Ag〜+ / Na〜+离子交换工艺制造了平面波导。测量了波导的特征参数,例如模数,折射率变化,扩散区域的深度和传播损失。二价阳离子的相互替换影响了配位于玻璃中金属离子的氧原子的电子给体功率(碱度)。测得的光谱,寿命值和波导参数反映了玻璃碱度的变化。为了量化Ca〜(2 +),Mg〜(2+)和Zn〜(2+)的个体效应,我们基于具有多个变量的多项式函数计算了组成属性模型。相关系数R〜2在0.991至1.000之间变化,表明参数与成分之间具有良好的线性相关性。对玻璃成分对所研究参数的影响的评估使我们能够量化二价阳离子的化学影响。我们使用光学碱度理论讨论了这种影响,该理论预测了氧原子随玻璃组成的电子给体功率的变化。成分效应的知识对于有效配制新的玻璃组合物非常有用。含有Zn〜(2+)和/或Mg〜(2+)作为二价阳离子的新型Er玻璃是用于光波导放大器的有前途的材料。

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