首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >FURTHER STUDY OF A RATE MODEL FOR INDUCTIVELY COUPLED PLASMA ANALYTE SPECTRA USING A MONTE CARLO TECHNIQUE
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FURTHER STUDY OF A RATE MODEL FOR INDUCTIVELY COUPLED PLASMA ANALYTE SPECTRA USING A MONTE CARLO TECHNIQUE

机译:蒙特卡罗技术对电感耦合等离子体分析物光谱速率模型的进一步研究

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摘要

Based on Lovett's model, an attempt has been made to evaluate the effect of a number of processes Possibly responsible for the analyte spectra emitted from an analytical ICP (inductively coupled plasma) with a Monte Carlo technique. The simulation results show that under conventional ICP operating conditions, absorption, stimulated emission, atom collisional ionization, atom recombination, autoionization, autoionization recombination, and dielectronic recombination made very little or no contribution to the level population, The Penning ionization process has an important effect on the ionization and excitation of Mn only at number density of metastable Ar greater than 10(11)/cm(-3). Electron collisional processes, radiative recombination, and radiative decay are mainly responsible for Mn ionization and excitation. Using the above-mentioned key processes, together with the spatial distribution of the number density of evaporated analyte particles in the ICP obtained previously, the spatial distribution of the number density of excited or ionized Mn under different conditions is simulated, The simulation program is valid and the mechanisms evaluated are reasonable. (C) 1996 Academic Press, Inc. [References: 14]
机译:基于洛维特模型,已尝试通过蒙特卡洛技术评估可能由解析ICP(感应耦合等离子体)发出的分析物光谱的许多过程的效果。仿真结果表明,在常规ICP工作条件下,吸收,受激发射,原子碰撞电离,原子重组,自电离,自电离重组和双电子重组对能级总体的贡献很小或没有,彭宁电离过程具有重要作用仅在亚稳Ar的数密度大于10(11)/ cm(-3)时,Mn的电离和激发作用。电子碰撞过程,辐射复合和辐射衰变主要是造成Mn电离和激发的原因。利用上述关键过程,结合先前获得的ICP中蒸发的分析物颗粒数密度的空间分布,模拟了不同条件下激发或电离的Mn的数密度的空间分布,该仿真程序是有效的并且评估的机制是合理的。 (C)1996 Academic Press,Inc. [参考:14]

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