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Kinetic-energy distributions of positive and negative ions in Townsend discharges in oxygen

机译:氧气中汤森放电中正负离子的动能分布

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Translational flux-energy distributions of positive and negative ions have been measured at high electric field-to-gas density ratios (E/N) up to 40 x 10(-18) V m(2) (40 kTd) in diffuse, parallel-plate Townsend discharges in oxygen using an ion energy analyzer-mass spectrometer. The O-2(+) ion is the most abundant ion detected in the discharge, and exhibits Maxwellian energy distributions for E/N<20 x 10(18) V m(2), which is consistent with predictions based upon the assumption that resonant symmetric charge exchange is the dominant ion-molecule collision process. The less abundant ions O+, O-2(-), and O- exhibit non-Mawellian ion kinetic-energy distributions at nearly all E/N, indicative of multiple ion-molecule reactions affecting the ion transport. Mean energies are obtained for each ion as a function of E/N from an analysis of the energy distributions, and symmetric charge-exchange cross sections are calculated:from the data where appropriate. [References: 40]
机译:正离子和负离子的平移通量-能量分布已在高电场与气体密度比(E / N)高达40 x 10(-18)V m(2)(40 kTd)的情况下进行了测量板Townsend使用离子能分析仪-质谱仪释放氧气。 O-2(+)离子是放电中检测到的最丰富的离子,对于E / N <20 x 10(18)V m(2)表现出麦克斯韦能量分布,这与基于以下假设的预测一致共振对称电荷交换是主要的离子-分子碰撞过程。较少丰度的离子O +,O-2(-)和O-在几乎所有E / N处都表现出非马氏离子动能分布,这表明多个离子分子反应会影响离子迁移。通过分析能量分布获得每个离子的平均能量,作为E / N的函数,并在适当的情况下根据数据计算对称的电荷交换截面。 [参考:40]

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