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Observation of strongly nonquadratic homogeneous upconversion in Er/sup 3+/-doped silica fibers and reevaluation of the degree of clustering

机译:Er / sup 3 +/-掺杂石英纤维中强非二次均匀上转换的观察和聚簇程度的重新评估

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摘要

From careful studies of the 1530-nm fluorescence decay, we obtain the rate of energy transfer upconversion as a function of the inverted population for a series of nine highly Er-doped silica fibers (with concentrations from 0.3 to 8.6/spl middot/10/sup 25/ Er/sup 3+/-ions per m/sup 3/). The results demonstrate that the slow component (microsecond to millisecond scale) of the upconversion, usually referred to as the homogeneous upconversion, is clearly nonquadratic in its dependence on the inverted population, contrary to previous assumptions in the literature. In a second part, we present a new detailed model for energy transfer upconversion, permitting-to our knowledge for the first time-calculation of the rate of migration accelerated upconversion for any given spatial distribution of Er/sup 3+/-ions. We demonstrate that the results from the decay measurements may be explained with this model. Next, we review the results from a CW green fluorescence detection experiment for the determination of the degree of clustering, which was previously performed on five of the nine fibers. We find accordance between these results and our model, with parameters consistent with those needed to fit the results of the decay experiment, and we arrive at a new conclusion about the nature of clustering.
机译:通过对1530 nm荧光衰减的仔细研究,我们获得了一系列九种高Er掺杂石英纤维(浓度范围为0.3至8.6 / spl middot / 10 /)的能量转移上转换速率与反向种群数量的函数。 sup 25 / Er / sup 3 +/-离子/ m / sup 3 /)。结果表明,上转换的慢分量(微秒至毫秒级),通常称为同质上转换,显然其对反相种群的依赖性是非二次的,这与文献中先前的假设相反。在第二部分中,我们介绍了一个新的详细的能量转移上转换模型,据我们所知,对于任何给定的Er / sup 3 +/-离子空间分布,迁移率加速上转换的速率都是第一次。我们证明了使用该模型可以解释衰减测量的结果。接下来,我们回顾来自CW绿色荧光检测实验的结果,以确定簇的程度,该过程以前是在9根纤维中的5根上进行的。我们在这些结果和我们的模型之间找到符合条件的参数,这些参数与拟合衰减实验的结果所需的参数一致,从而得出有关聚类性质的新结论。

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