Yanguas-Gil A, Cotrino J, González-Elipe A R
Instituto de Ciencias de Materiales de Sevilla and Departamento de Física Atómica, Molecular y Nuclear and Química Inorgánica (CSIC, Universidad de Sevilla), Sevilla, Spain.
Phys Rev E Stat Nonlin Soft Matter Phys. 2005 Jul;72(1 Pt 2):016401. doi: 10.1103/PhysRevE.72.016401. Epub 2005 Jul 7.
In this work the influence of the excited states on the electron-energy distribution function has been determined for an argon microwave discharge at low pressure. A collisional-radiative model of argon has been developed taking into account the most recent experimental and theoretical values of argon-electron-impact excitation cross sections. The model has been solved along with the electron Boltzmann equation in order to study the influence of the inelastic collisions from the argon excited states on the electron-energy distribution function. Results show that under certain conditions the excited states can play an important role in determining the shape of the distribution function and the mean kinetic energy of the electrons, deplecting the high-energy tail due to inelastic processes from the excited states, especially from the 4s excited configuration. It has been found that from the populations of the excited states an excitation temperature can be defined. This excitation temperature, which can be experimentally determined by optical emission spectroscopy, is lower than the electron kinetic temperature obtained from the electron-energy distribution function.
在这项工作中,已确定了低压氩微波放电中激发态对电子能量分布函数的影响。考虑到氩 - 电子碰撞激发截面的最新实验和理论值,建立了氩的碰撞辐射模型。为了研究氩激发态的非弹性碰撞对电子能量分布函数的影响,该模型与电子玻尔兹曼方程一同求解。结果表明,在某些条件下,激发态在确定分布函数的形状和电子的平均动能方面可发挥重要作用,由于来自激发态(特别是4s激发组态)的非弹性过程,消耗了高能尾部。已发现根据激发态的布居数可以定义一个激发温度。这个可通过光发射光谱实验测定的激发温度低于从电子能量分布函数获得的电子动能温度。