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The role of electron scattering with vibrationally excited nitrogen molecules on non-equilibrium plasma kinetics

机译:振动激发氮分子的电子散射对非平衡等离子体动力学的作用

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Electron energy distribution functions have been calculated by a self-consistent model which couples the electron Boltzmann equation with vibrationally and electronically excited state kinetics and plasma chemistry. Moderate pressure nitrogen gas discharges in the E/N range from 30 to 60 Townsend are investigated comparing an electron-impact cross section set considering transitions starting from all the vibrational states, with reduced models, taking into account only collisions involving the ground vibrational level. The results, while confirming the important role of second kind collisions in affecting the eedf, show a large dependence of the eedf on the set of inelastic processes involving vibrationally and electronically excited molecules, pointing out the need of using a cross section database including processes linking excited states in non-equilibrium plasma discharge models.
机译:电子能量分布函数已通过自洽模型计算,该模型将电子玻尔兹曼方程与振动和电子激发态动力学以及等离子体化学耦合在一起。研究了E / N范围为30至60 Townsend的中压氮气排放,比较了考虑到从所有振动状态开始的跃迁的电子碰撞横截面集和简化模型,并仅考虑了涉及地面振动水平的碰撞。结果证实了第二类碰撞在影响eedf中的重要作用,但表明eedf对涉及振动和电子激发分子的一系列非弹性过程的依赖性很大,指出需要使用包括过程链接在内的横截面数据库非平衡等离子体放电模型中的激发态。

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