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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Investigation of Coatings for Langmuir Probes: Effect of Surface Oxidation on Photoemission Characteristics
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Investigation of Coatings for Langmuir Probes: Effect of Surface Oxidation on Photoemission Characteristics

机译:朗缪尔探针对涂料:表面氧化对光电发射的影响特征

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Surface oxidation of Langmuir probes is an important issue for probe measurements in space environments. Followed by our previous work about the oxidation effect on the collection of ambient plasma electrons and ions, here we present its effect on photoemission from the probe surface of various materials. Photoemission is either a contamination for traditional Langmuir probes or a necessity for electric field probes in low-density plasma. Our results show that all materials after oxidation have a varying degree of reduction in photoemission. The photoemission of copper, gold, and niobium drops most significantly followed by DAG213 (a resin-based graphite coating), TiN (titanium nitride), and rhenium. Iridium, DAG213, and AquaDAG (graphite coating) have the largest photoemission after oxidation, making them appropriate coating candidates for electric field probes. Both DAG materials show a large photoemission enhancement after the oxidation products are cleaned off the surface. A long exposure test shows that the photoemission from iridium slowly degrades. Due to the high surface conductivity of oxidized iridium shown in previous work, it is suggested that iridium can be oxidized before flight to minimize the photoemission when being used as a coating for Langmuir probes. Overall, iridium is found to be a coating material appropriate for both electric field probes and Langmuir probes.
机译:朗缪尔探针表面氧化是一个在太空探测器测量的重要问题环境。氧化影响环境的集合其等离子体电子和离子,我们礼物从探测器表面对光电发射的影响各种材料。对传统的朗缪尔探针或污染电场探头的必要性低密度等离子体。氧化后材料有不同程度光电发射的减少。铜、金、和铌滴明显DAG213(树脂紧随其后石墨涂层),锡(氮化钛),铼。涂层)最大的光电发射氧化,使其适当的涂层候选人电场探头。材料显示出大型光电效应增强氧化后产品清洗掉表面。光电发射从铱慢慢降低。高氧化的表面电导率铱在以往的研究中,显示建议飞行前都可以氧化铱当被用作最小化光电发射朗缪尔探针的涂层。发现涂层材料适合电场探头和朗缪尔探针。

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