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Positive spacecraft charging as measured by the Shuttle potential and Return Electron experiment

机译:通过航天飞机的电势和返回电子实验测得的航天器正充电

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The authors report on obsevations of positive charging of the Orbiter during the deployed phase of the TSS-1 (Tethered Satellite System 1). The charging was observed to occur when the Orbiter was in darkness, during periods of low ionospheric density and while the SETS FPEG (Shuttle Electrodynamic Tether System Fast Pulsed Electron Gun) was emitting a 1-keV, 100-mA electron beam. The charging occurred when the ambient plasma density was too low to provide a current to match the FPEG emission. In the cases where the ambient plasma temperature was approximately 0.1 eV, and assuming a conducting area of the Orbiter of approximately 25 m/sup 2/, the positive charging occurred for densities below 6*10/sup 5/ electrons/cm/sup 3/. The charging is seen as an acceleration of the relatively hot electron population in the energy range above 10 eV that had already been greatly enhanced by the operation of the FPEG. Intense fluxes of electrons were observed at low energy for both the charged and uncharged Orbiter. This low energy component tended to be isotropic with densities as high as 4.6*10/sup 3/ electrons/cm/sup 3/. The return flux at the charging peak was anisotropic, with the anisotropy varying with the level of charging and the pitch angle.
机译:作者报告了在TSS-1(系留卫星系统1)部署阶段轨道器带正电的现象。当轨道器在黑暗中,电离层密度低的时期以及SETS FPEG(Shuttle电动系绳系统快速脉冲电子枪)发射1keV,100mA电子束时,观察到充电发生。当环境等离子体密度太低而无法提供与FPEG发射匹配的电流时,就会发生充电。在环境等离子体温度约为0.1 eV,并且假设轨道飞行器的导电面积约为25 m / sup 2 /的情况下,密度低于6 * 10 / sup 5 /电子/ cm / sup 3时会发生正电荷/。充电被视为相对热的电子种群在10 eV以上的能量范围内的加速,这已经通过FPEG的运行大大增强了。在低能量下,无论是带电的还是不带电的轨道器,都可以看到强烈的电子通量。这种低能量成分趋向于各向同性,其密度高达4.6 * 10 / sup 3 /电子/ cm / sup 3 /。充电峰值处的返回通量是各向异性的,各向异性随充电水平和俯仰角而变化。

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