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Bare-tether cathodic contact through thermoionic emission by low work-function materials

机译:低功函数材料通过热电子发射产生的裸线阴极接触

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摘要

A new material, C12A7 : electride, which might present a work function as low as 0.6 eV and moderately high temperature stability, was recently proposed as coating for floating bare tethers. Arising from heating under space operation, current is emitted by thermionic emission along a thus coated cathodic segment. A preliminary study on the space-charge-limited (SCL) double layer in front of the cathodic segment is presented using Langmuir’s SCL electron current between cylindrical electrodes and orbital-motion-limited ion-collection sheath. A detailed calculation ofudcurrent and bias profiles along the entire tether length is carried out with ohmic effects and the transition from SCL to full Richardson-Dushman emission included. Analysis shows that in the simplest drag mode, under typical orbital and tether conditions, thermionic emission leads to a shortudcathodic section and may eliminate the need for an active cathodic device and its corresponding gas feed requirements and power subsystem, which results in a truly “propellant-less” tether system for such basic applications as de-orbiting low earth orbit satellites.
机译:最近提出了一种新材料C12A7:electride,它可能具有低至0.6 eV的功函数和适度的高温稳定性,被用作浮动裸绳的涂层。由于在空间操作下加热而引起,电流通过热电子发射沿着如此涂覆的阴极段发射。利用朗缪尔(Langmuir)在圆柱电极之间的SCL电子电流和轨道运动受限的离子收集鞘,对阴极段前面的空间电荷受限(SCL)双层进行了初步研究。沿整个系链长度对 udcurrent和bias分布进行了详细的计算,并带有欧姆效应,包括从SCL到完全Richardson-Dushman发射的过渡。分析表明,在最简单的拖曳模式下,在典型的轨道和系链条件下,热电子发射导致阴极截面短,可能不需要有源阴极装置及其相应的气体进料要求和功率子系统,从而真正实现了“低推进剂”系绳系统,用于低轨道卫星的离轨等基本应用。

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