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Self-element secondary fluorescence enhancement in XRF analysis

机译:XRF分析中的自元素二次荧光增强

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In XRF analysis, the need for improved quantification approaches for non-homogeneous samples requires a better understanding of all the energy-dispersive spectrum features, in particular, the K/L or L/M intensity ratios among the characteristic x-rays of the same element. These ratios are affected by the secondary fluorescence contribution of the more energetic characteristic x-rays (K- or L-lines) to the corresponding one of lower energy (L- or M-lines, respectively). Theoretical calculations of the secondary fluorescence contribution among the characteristic x-ray lines of the same element (self-element secondary fluorescence enhancement) are presented for pure element targets by means of the fundamental parameter approach. For representative cases, the calculations were also performed for different exciting monochromatic x-ray beam energies and as a function of the target thickness. The calculations predict that for pure targets and monochromatic exciting radiation, the self-element secondary fluorescence enhancement contributes to the primary fluorescence intensity in a non-negligible amount, up to about 20-25%. An experimental approach is proposed for the estimation in thick pure targets of the relative increase of the M,,p fluorescence intensity due to the L-line self-element secondary fluorescence enhancement. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:在XRF分析中,需要对非均质样品进行改进的定量方法,需要更好地理解所有能量色散谱特征,尤其是相同特征X射线之间的K / L或L / M强度比元件。这些比率受高能特征X射线(K线或L线)对较低能量(分别为L线或M线)中相应一个的二次荧光贡献的影响。通过基本参数方法,针对纯元素目标,提出了相同元素的特征X射线线之间的二次荧光贡献(自元素二次荧光增强)的理论计算。对于代表性的情况,还针对不同的激发单色X射线束能量并根据目标厚度进行了计算。该计算预测对于纯目标和单色激发辐射,自元素二次荧光增强以不可忽略的量贡献一次荧光强度,最高可达约20-25%。提出了一种实验方法,用于估计厚的纯目标中由于L线自元素二次荧光增强而引起的M ,, p荧光强度的相对增加。版权所有(c)2005 John Wiley&Sons,Ltd.

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