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Secondary Electron Emission Measurements of Atomic- Oxygen-Irradiated Cover glasses

机译:原子氧辐射防护玻璃的二次电子发射测量

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We studied the measurement of secondary electron emission (SEE) of metal and insulating materials used for satellite thermal insulation or other such purposes. The SEE yield measurement is very important for analyzing charge accumulation on satellite surfaces in a space environment because electron emission related to irradiated electrons influences the amount of surface charge. We considered degradation phenomena of surface materials for spacecraft caused by radioactive rays. Those SEE yields might change for a non-degradation sample. We measured the SEE yields of surface materials for spacecraft that are treated using the degradation process. In preparation of the degradation sample, the samples were irradiated by atomic oxygen (AO) to simulate degradation in a space environment. We take three irradiation conditions and two irradiation methods related to a GEO orbit and operating period. This report introduces the measurement results of the cover glasses. We discuss the relationship between the SEE yields and sample degradation when irradiated by atomic oxygen. Furthermore, we consider the effect of different AO irradiation methods: the laser detonation method and the plasma asher method.
机译:我们研究了用于卫星隔热或其他此类目的的金属和绝缘材料的二次电子发射(SEE)的测量。 SEE产率测量对于分析空间环境中卫星表面上的电荷积累非常重要,因为与辐射电子有关的电子发射会影响表面电荷量。我们考虑了由放射性射线引起的航天器表面材料的降解现象。对于非降解样品,那些SEE产量可能会发生变化。我们测量了使用降解过程处理过的航天器表面材料的SEE产量。在制备降解样品时,用原子氧(AO)照射样品以模拟空间环境中的降解。我们采用了三种辐照条件和两种辐照方法,它们与GEO轨道和工作周期有关。本报告介绍了防护玻璃的测量结果。我们讨论了原子氧辐照时SEE产量与样品降解之间的关系。此外,我们考虑了不同的AO照射方法的效果:激光爆轰方法和等离子灰化方法。

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