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In this paper, we introduce the optical electronegativity Dwglass, to predict basic properties of binary oxide glasses (phosphate, borate, silicate, germinate, tellurite, and titanate).

在本文中,我们引入光学电 DW的玻璃,预测的基本性质二元氧化物玻璃(磷酸盐,硼酸盐,硅酸盐,发芽,碲,钛酸)。

A series of niobic tellurite glasses of 85TeO2-(15-x) Nb2O5-xB2O3-1﹪Er2O3 (TNB x=0,3,6,9,12,15,molar fraction) glasses were prepared.

制备了一系列碲铌酸盐玻璃85TeO2-(15-x)Nb2O5-xB2O3-1﹪Er2O3 (TNB x=0, 3, 6, 9, 12, 15)。

The results showed that Yb~(3+)-sensitized Tm~(3+)-doped oxyhalide tellurite glasses can be used as a kind of potential host materials for upconversion blue lasers .

结果表明Yb3+敏化Tm3+掺杂氧卤碲酸盐玻璃是一种上转换蓝光激光器的潜在基质材料。

Oxyhalide tellurite glasses:(80-x)TeO2-15ZnCl2-xBaO-5NaF(x=30,20,10,0mol%) were prepared. The mechanical strength performance, thermal properties, Raman spectra, UV absorption spectra and Infrared transmission spectra of the samples were investigated.

制备了一种新型的氧卤碲酸盐玻璃:(80-x)TeO2-15ZnCl2-xBaO-5NaF(x=30、20、10、0mol%),对玻璃的机械强度、热稳定性、拉曼光谱、紫外吸收光谱、红外透过光谱等特性进行了研究。

The effects of Yb2O3 concentration on upconversion luminescence spectra of Tm3+/Yb3+-codoped oxyhalide tellurite glasses were studied, and upconversion luminescence mechanism of Yb3+ sensitize Tm3+ in oxyhalide tellurite glasses was analyzed.

研究了Yb2O3浓度对Tm3+/Yb3+共掺氧卤碲酸盐玻璃的上转换发光的影响,分析了上转换发光机理。

Erbium-doped glass showing the wider 1.5-μm emission band is reported in a novel oxide system TeO2-WOa-Nb2O5 and their thermal stability and optical properties such as absorption, emission spectra, crosssections and fluorescence lifetime were investigated.

[1]绍兴托普信息职业技术学院基础学部,浙江绍兴312000 [2]杭州师范学院理学院物理系,浙江杭州310036 [3]宁波大学信息科学与工程学院,浙江宁波315211制备了一系列碲铌酸盐玻璃85TeO2-(15 -x)Nb2O5-xB2O3-1%Er2O3(TNBx=0, 3, 6, 9, 12, 15)。根据Judd-Ofelt和McCumber理论,讨论和分析了B2O3含量对掺铒碲铌酸盐玻璃热稳定性及光谱性质影响。

The cut-off wavelength of the fiber is about 1270nm. The dispersion of the fiber is about -25ps/nm~*km at 1550nm. The MFD the fiber is about 7.12μm at 1550nm. These optic properties are suitable for EDFA application.

设计数据表明上述碲酸盐玻璃很好地满足了作为EDFA光纤的要求,对熔接损耗、色散和传输条件等要素基本上达到了最优化。

Keywords: blue and green light output, halidetellurite glass, emission efficiency

中文关键词:蓝绿光输出;卤碲酸盐玻璃;发光效率

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