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X-ray absorption in atomic iodine in the K-edge region

机译:K边缘区域中原子碘中的X射线吸收

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X-ray atomic absorption of iodine in the energy region of the K edge is determined from the absorption of iodine vapor at temperatures up to 1000℃ with appreciable dissociation of the molecular species. Kinetics of dissociation, relevant for isolation of the absorption of the atomic species, is discussed. The atomic signal is obtained as a linear combination of the highest-temperature absorption spectra at two vapor densities; the coefficients of the combination are determined from extended x-ray absorption fine structure (EXAFS) analysis of the molecular signal. Photoexcitation channels are identified in the K-edge profile and in the spectral features originating from multielectron excitations. The applicability of the atomic absorption as the true absorption background for EXAFS analysis is demonstrated.
机译:在K边的能量区域中碘的X射线原子吸收是由在高达1000℃的温度下碘蒸气的吸收以及分子种类的明显离解确定的。讨论了离解动力学,与分离原子种类的吸收有关。原子信号是在两个蒸气密度下,最高温度吸收光谱的线性组合得到的。组合的系数由分子信号的扩展X射线吸收精细结构(EXAFS)分析确定。在K边缘轮廓和源自多电子激发的光谱特征中识别出光激发通道。证明了原子吸收作为EXAFS分析的真实吸收背景的适用性。

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