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A relaxation-accelerated propagator method for calculations of electron energy distribution function and electron transport parameters in gas under dc electric fields

机译:一种弛豫加速传播方法,用于计算DC电场气体中的电子能量分布函数和电子传输参数

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A propagator method (PM), a numerical technique to solve the Boltzmann equation (BE) for the electron velocity or energy distribution function (EVDF/EEDF) of electron swarms in gases, was customized to obtain the equilibrium solution quickly. The PM calculates the number of electrons in cells defined in velocity space using an operator called the propagator or Green's function. The propagator represents the intercellular transfer of electrons corresponding to the electron velocity change due to the acceleration by the electric field and the collisional events with gas molecules. The relaxation of the EVDF to its drift equilibrium solution proceeds with iterative propagator operations for the EVDF. Merits of the PM are that the series expansion of the EVDF as done in the BE analyses is not required and that time evolution of the electron swarm can be observed if necessary. On the other hand, in case only the equilibrium solution of the EVDF is wanted, the relaxation can be accelerated numerically. A demonstration achieved a shortening of the computational time by about three orders of magnitude. Furthermore, this scheme was applied to calculations of a set of electron transport parameters required in fluidmodel simulations, i.e. the effective ionization frequency, the centroid drift velocity and the longitudinal diffusion coefficient, using the zeroth-, first- and second-order moment equations derived from the BE. A detailed description on the PM calculation was presented.
机译:传播方法(PM),用于解决气体中电子群体的电子速度或能量分布函数(EEDF / EEDF)的单位技术的数值技术被定制,以快速获得平衡溶液。 PM使用称为传播者或绿色函数的操作员计算在速度空间中定义的细胞中的电子数。传播器代表了由于电场的加速度和气体分子的碰撞事件而对应于电子速度变化的电子的间细胞间转移。 EVDF对其漂移均衡解决方案的放松对EVDF的迭代传播操作进行了进行。 PM的优点是,如在分析中所做的eVDF的串联扩展是不需要的,并且如果需要,可以观察到电子群的时间演变。另一方面,在只需要EVDF的平衡解的情况下,可以在数值上加速松弛。示范达到计算时间缩短了大约三个数量级。此外,该方案被应用于流体模型模拟中所需的一组电子传输参数的计算,即使用衍生的Zeroth-,第一和二阶和二阶矩等式的有效电离频率,质心漂移速度和纵向扩散系数。从那里。提出了关于PM计算的详细描述。

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