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Electron-ion recombination rate constant in dense gaseous argon and krypton

机译:致密气态氩和k中的电子离子复合速率常数

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摘要

The rate constants of bulk electron-ion recombination in dense gaseous argon and krypton have been calculated by means of computer simulation. The electron scattering in those systems was modeled by the low-pressure energy-dependent cross sections for elastic collisions with gas atoms. The applicability of the assumed cross sections to the considered systems was verified by the calculation of the electron mobility in an external electric field. The recombination rate constants determined from our simulation are two orders of magnitude lower than the experimental results. Possible reasons for this disagreement are discussed.
机译:通过计算机模拟,计算出了稠密气态氩和k中体电子离子复合的速率常数。这些系统中的电子散射通过与能量原子发生弹性碰撞的低压能量相关截面进行建模。通过计算外部电场中的电子迁移率,验证了假定截面对所考虑系统的适用性。由我们的模拟确定的重组速率常数比实验结果低两个数量级。讨论了造成这种分歧的可能原因。

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