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Environment Exposure Tests of Electron-Emitting Film for Spacecraft Charging Mitigation

机译:减轻航天器电荷的电子发射膜的环境暴露测试

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A new electron-emitting device operating in completely passive manner has been developed to prevent spacecraft charging and discharging. It is named as electron-emitting film (ELF) for spacecraft charging mitigation. This emitter (ELF) utilizes the field enhancement at the triple junction formed at the interface where metal and insulator are met and exposed to vacuum. ELF emits prebreakdown emission current that might lead to arcing at the triple junction. Hence, it balances the input and output currents to the spacecraft during substorm. After ensuring the robustness of this ELF against ground handling and in-orbit contamination, laboratory experiment confirmed continuous electron emission for 100 accumulated hours to assure the endurance. In this paper, its durability against high-energy electron and proton irradiation equivalent to ten solar years in GEO is reported. Effect of heat cycling ($-150 ^{circ}hbox{C}$–100 $^{circ}hbox{C}$) and vacuum ultraviolet irradiation in GEO on this emitter is also completed. Postemissions of this ELF confirm the durability under those harsh space environments.
机译:已经开发出一种以完全被动方式工作的新型电子发射装置,以防止航天器充放电。它被称为减轻航天器充电的电子发射膜(ELF)。该发射极(ELF)利用在金属和绝缘体相遇并暴露于真空的界面处形成的三重结处的场增强。 ELF发射预击穿发射电流,该电流可能导致三重结处产生电弧。因此,它在亚暴期间平衡了航天器的输入和输出电流。在确保该ELF抵抗地面处理和在轨污染的稳健性之后,实验室实验证实了连续100小时的连续电子发射以确保持久性。本文报道了其对高能电子和质子辐照的耐久性,相当于GEO中的十个太阳年。还完成了在该发射器上进行热循环($ -150 ^ hbox {C} $ – 100 $ ^ {circ} hbox {C} $)和在GEO中进行真空紫外线照射的效果。此ELF的后期发射确认了在那些恶劣的空间环境下的耐久性。

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