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Optical loss and Nd3+ non-radiative relaxation by Cu, Fe and several rare earth impurities in phosphate laser glasses

机译:磷酸盐,激光玻璃中铜,铁和几种稀土杂质的光损失和Nd3 +非辐射弛豫

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摘要

Extinction coefficients (at 1053 nm) and Nd3+ fluorescence quenching rates are reported for Cu, Fe, Dy, Pr, Sm and Ce at doping concentrations up to 1000 ppmw in two meta-phosphate laser glasses melted under oxidizing conditions (1 atmosphere O-2). The extinction coefficient and quenching rate for Cu are 2.7(+/-0.1) x 10(-3) cm(-1)/ppmw and 10.4 +/- 0.2 Hz/ppmw, respectively. The extinction coefficient and quenching rate for Fe are concentration dependent below 300 ppmw due to an observed change in Fe2+/Fe3+ distribution; an empirically derived expression is used to describe this effect. The extinction coefficient and quenching rates for Dy, Pr and Sm, are nearly the same: 1.6, 1.2 and 1.3(+/-0.05) x 10(-5) cm(-1)/ppmw and 0.89, 0.72 and 0.63 +/- 0.04 Hz/ppmw, respectively, while those for Ce are less: 0.84(+/-0.03) x 10(-5) cm(-1)/ppmw and 0.061 +/- 0.03 Hz/ppmw. The quenching results are explained using the Forster-Dexter theory for dipolar energy transfer. (C) 2000 Published by Elsevier Science B.V. All rights reserved. [References: 40]
机译:报道了在氧化条件下熔化的两种偏磷酸盐激光玻璃中,掺杂浓度高达1000 ppmw时,Cu,Fe,Dy,Pr,Sm和Ce的消光系数(在1053 nm处)和Nd3 +荧光猝灭速率(1个大气压O-2 )。 Cu的消光系数和淬灭速度分别为2.7(+/- 0.1)x 10(-3)cm(-1)/ ppmw和10.4 +/- 0.2 Hz / ppmw。由于观察到的Fe2 + / Fe3 +分布的变化,Fe的消光系数和淬灭速率取决于300 ppmw以下的浓度。根据经验得出的表达式用于描述这种效果。 Dy,Pr和Sm的消光系数和淬灭速率几乎相同:1.6、1.2和1.3(+/- 0.05)x 10(-5)cm(-1)/ ppmw和0.89、0.72和0.63 + / -分别为0.04 Hz / ppmw,而Ce的值则较小:0.84(+/- 0.03)x 10(-5)cm(-1)/ ppmw和0.061 +/- 0.03 Hz / ppmw。使用Forster-Dexter理论进行偶极能量转移来解释淬灭结果。 (C)2000,Elsevier Science B.V.保留所有权利。 [参考:40]

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