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2.7 μm emission of high thermally and chemically durable glasses based on AlF3

机译:基于AlF3的2.7微米高耐热和化学耐用玻璃的发射

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摘要

AlF3-based glasses (AlF3-YF3-CaF2-BaF2-SrF2-MgF2) with enhanced thermal and chemical stability were synthesized and compared with the well-known fluorozirconate glass (ZBLAN). The 2.7 μm mid-infrared emission in the AlF3-based glasses was also investigated through the absorption and emission spectra. Both the temperature of glass transition and the characteristic temperatures (ΔT, Hr, kgl) of the fluoroaluminate glasses were much larger than those of the ZBLAN glasses. The corrosion phenomenon can be observed by naked-eye, and the transmittance dropped dramatically (0% at 3 μm) when the ZBLAN glass was placed into distilled water. However, the AlF3-based glass was relatively stable. The fluoroaluminate glasses possessed large branching ratio (20%) along with the emission cross section (9.4×10−21 cm−2) of the Er3+:4I11/2→4I13/2 transition. Meanwhile, the enhanced 2.7 μm emission in highly Er3+-doped AYF glass was obtained. Therefore, these results showed that this kind of fluoride glass has a promising application for solid state lasers at 3 μm.
机译:合成了具有增强的热稳定性和化学稳定性的基于AlF3的玻璃(AlF3-YF3-CaF2-BaF2-SrF2-MgF2),并与众所周知的氟锆酸盐玻璃(ZBLAN)进行了比较。还通过吸收和发射光谱研究了基于AlF3的玻璃中的2.7μm的中红外发射。氟铝酸盐玻璃的玻璃化转变温度和特征温度(ΔT,Hr,kgl)都远大于ZBLAN玻璃。当将ZBLAN玻璃放入蒸馏水中时,可以用肉眼观察到腐蚀现象,并且透射率急剧下降(在3μm时为0%)。然而,基于AlF 3的玻璃相对稳定。氟铝酸盐玻璃的Er 3+ <的发射截面(9.4×10 −21 cm -2 )具有较大的分支比(20%)。 / sup>: 4 I11 / 2→ 4 I13 / 2转换。同时,在掺Er 3 + 的AYF玻璃中获得了增强的2.7μm发射。因此,这些结果表明,这种氟化物玻璃在3μm的固态激光器中具有广阔的应用前景。

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