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Fluorescence from airborne microparticles: dependence on size, concentration of fluorophores, and illumination intensity

机译:空气中微粒发出的荧光:取决于尺寸,荧光团浓度和照明强度

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We measured fluorescence from spherical water droplets containing tryptophan and from aggregates of bacterial cells and compared these measurements with calculations of fluorescence of dielectric spheres. The measured dependence of fluorescence on size, from both droplets and dry-particle aggregates of bacteria, is proportional to the absorption cross section calculated for homogeneous spheres containing the appropriate percentage of tryptophan. However, as the tryptophan concentration of the water droplets is increased, the measured fluorescence from droplets increases less than predicted, probably because of concentration quenching. We model the dependence of the fluorescence on input intensity by assuming that the average time between fluorescence emission events is the sum of the fluorescence lifetime and the excitation lifetime (the average time it takes for an illuminated molecule to be excited), which we calculated assuming that the intensity inside the particle is uniform. Even though the intensity inside the particles spatially varies, this assumption of uniform intensity still leads to results consistent with the measured intensity dependence.
机译:我们测量了含有色氨酸的球形水滴和细菌细胞聚集体的荧光,并将这些测量结果与介电球体的荧光计算进行了比较。从细菌的液滴和干颗粒聚集体中测得的荧光对尺寸的依赖性与正比于含有适当百分比色氨酸的均质球体的吸收截面成正比。但是,随着水滴中色氨酸浓度的增加,从水滴中测得的荧光增加得比预期的要少,这可能是由于浓度猝灭所致。我们通过假设荧光发射事件之间的平均时间是荧光寿命和激发寿命的总和(激发一个照明分子所花费的平均时间)来模拟荧光对输入强度的依赖性,我们假设粒子内部的强度是均匀的。即使粒子内部的强度在空间上发生变化,但这种均匀强度的假设仍会导致与测得的强度相关性一致的结果。

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