折射率
材料科学
衰减系数
色散(光学)
透射率
吸收(声学)
氟磷酸二异丙酯
光学
激光器
分析化学(期刊)
光电子学
化学
复合材料
物理
生物化学
酶
色谱法
作者
Fei Gao,Faqiang Zhang,Liqing Yang,Zhiyuan Ma,Feng Yang,Bin Hu,Bo Peng,Chunliang Liu,Pengfei Wang
标识
DOI:10.1016/j.optmat.2023.114415
摘要
The effects of introducing some amount of KNO3 into the raw materials on preparation of fluorophosphate glass are investigated in terms of UV–vis transmittance, absorption coefficient and change of refractive index. As the content of KNO3 reaches 50%, the UV absorption coefficient of the optimized fluorophosphate glass reaches the minimum due to absence of microcrystals in the produced glass. The Schott's Sellmeier dispersion formula and Ghosh's two-polar wavelength-dependent Sellmeier equation were both used to calculate dispersion constants of the optimized fluorophosphate glass. The optimized fluorophosphate glass maintains special characteristics of negative temperature coefficient of refractive index and near-zero thermo-optical coefficient. The lower absorption both in UV and near-infrared (NIR) helps to improve its laser-induced damage resistance. The athermal fluorophosphate glass shows great potential for compensation of thermal-induced distortion in high-power solid-state lasers and high-resolution optical systems.
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