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Photoluminescence quenching by OH in Er- and Pr-doped glasses for 1.5 and 1.3 um optical amplifiers

机译:在ER和PR掺杂玻璃中的光致发光淬火为1.5和1.3μm光放大器

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In this paper we report on the effect of hydroxyl (OH) groups on the photoluminescence in the near IR (1.5 and 1.3 $mu@m) in rare earth (Er, Pr)-doped glasses. The 1.5 $mu@m emission of Er-doped phosphate glasses was studied, before and after a special heat treatment. The luminescent lifetime of the 1.5 $mu@m emission increases substantially, typically from 3 ms up to 7.2 ms for a 2 mole% Er$- 2$/O$-3$/-doped phosphate glass, due to the controlled heat treatment. The increase in lifetime is ascribed to a decrease in OH- concentration, which is confirmed by IR-absorption spectroscopy. The quenching by OH is described by a simplified quenching model, which predicts the 1.5 $mu@m emission lifetime as a function of Er- concentration with the OH-concentration as parameter. It appears that the larger part of the OH groups is coupled to Er ions and thus acts as quenching center. Photoluminescence quenching by OH groups is also reported for the 1.3 $mu@m emission of Pr in GeS$-2$/-glasses: In pure OH-free GeS$-2$/ glass the 1.3 $mu@m emission lifetime is as high as 350 $mu@s, for a 400 ppm dopant level. In GeS$-2$/ glasses containing only small amounts of OH (approximately 100 ppm), this lifetime is less than 200 $mu@s. Both examples demonstrate that for the fabrication of efficient glass optical amplifiers at the telecommunication windows 1.3 and 1.5 $mu@m, the OH-impurity level of the host glass must be kept as low as possible.
机译:在本文中,我们对稀土的近红外(1.5和1.3 $ @亩米)(ER,PR)掺杂玻璃光致发光的羟基的效果报告(OH)组。 1.5 $亩@的掺铒磷酸盐玻璃米发射进行了研究,之前和特殊的热处理之后。 1.5 $亩@米发射大大增加的发光寿命,通常为3毫秒到7.2毫秒为2摩尔%二$ - 2 $ / O $ $ -3 / - 掺杂的磷酸盐玻璃,由于控制热处理。在寿命的增加归因于OH-浓度,其由IR吸收光谱证实的降低。被OH淬火是通过简化的淬火模型,其预测的1.5 $亩@米发光寿命作为ER-浓度的与OH浓度作为参数的函数说明。看来,OH基的较大部分被耦合到Er离子并因此充当猝灭中心。通过OH基团的光致发光猝灭还报道为$ 1.3亩@中的GeS Pr中米发射$ $ -2 / - 眼镜:在纯无OH的GeS $ $ -2 /玻璃的1.3 $亩@米发光寿命是如高达350 $亩@ S,对于400ppm的掺杂剂水平。在仅含有少量OH(约100ppm的)的的GeS $ $ -2 /眼镜,这寿命小于$ 200亩@秒。两个实施例表明,用于有效玻璃光放大器中的电信窗口1.3和1.5 $亩@米的制造中,主机玻璃的OH-杂质水平必须保持尽可能低。

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