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Pulsed CsI-Coated Tufted Carbon Fiber Cathode Plasma

机译:脉冲CsI涂层簇状碳纤维阴极等离子体

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This paper discusses the out-gassing behavior of a repetitively pulsed electron beam diode with a CsI-coated tufted carbon fiber cathode and a carbon fiber anode. Through this paper, a cross section model was developed that utilizes experimental data including pressure, temperature and voltage (energy) for determination. Mass and optical spectroscopy identified neutral and ion species likely responsible for the pressure pulses. The identified neutral and ionization cross sections from the published literature and databases were compared with the experimentally determined cross sections. The types of cross sections were electron-neutral and was single impact leading to single, double and triple ionization as well as elastic scattering. This comparison leads to the conclusion that initial pressure bursts consist of plasma with constituents of Cs, Cs{sup}(++), Cs{sup}(+++), I, I{sup}(++), N{sub}2, (N{sub}2){sup}+, (H{sub}2O){sup}+, H, H{sup}+, and (H{sub}2){sup}+. Larger pressure bursts after the initial ones also include Cs{sup}+ and I{sup}+. Smaller bursts observed during steady state operations fluctuate between plasmas that contain H and H{sup}+, and those that contain H, H{sup}+, and (H{sub}2){sup}+. Consistently, the initial pressure pulses exceeded those found under steady-state operations. The optical spectroscopy timing and results are self-consistent with what is obtained from the cross section model. The cross section model coupled with the experimental data determines the transient plasma makeup responsible for the observed pressure pulses.
机译:本文讨论了具有CsI涂层簇状碳纤维阴极和碳纤维阳极的重复脉冲电子束二极管的除气性能。通过本文,开发了一个横截面模型,该模型利用包括压力,温度和电压(能量)的实验数据进行确定。质谱和光谱学确定了可能造成压力脉冲的中性和离子种类。从公开的文献和数据库中识别出的中性和电离截面与实验确定的截面进行了比较。横截面的类型是电子中性的,是单次撞击,导致一次,两次和三次电离以及弹性散射。该比较得出的结论是,初始压力爆发由具有Cs,Cs {sup}(++),Cs {sup}(+++),I,I {sup}(++),N { sub} 2,(N {sub} 2){sup} +,(H {sub} 2O){sup} +,H,H {sup} +和(H {sub} 2){sup} +。初始压力爆发后的较大压力爆发还包括Cs {sup} +和I {sup} +。在稳态操作期间观察到的较小的猝发在包含H和H {sup} +的等离子体与包含H,H {sup} +和(H {sub} 2){sup} +的等离子体之间波动。一致地,初始压力脉冲超过了稳态操作下的脉冲。光谱的时间和结果与从横截面模型获得的结果是自相矛盾的。横截面模型与实验数据一起确定了负责观察到的压力脉冲的瞬态等离子体组成。

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